diff --git a/.github/workflows/ci.yml b/.github/workflows/ci.yml index 62d1d313..3a55d423 100644 --- a/.github/workflows/ci.yml +++ b/.github/workflows/ci.yml @@ -73,7 +73,7 @@ jobs: runs-on: ubuntu-22.04 strategy: matrix: - python-version: ['3.11', '3.8'] + python-version: ['3.11'] steps: - uses: actions/checkout@v3 - name: Cache python dependencies @@ -91,5 +91,10 @@ jobs: run: | python -m pip install --upgrade pip setuptools wheel python -m pip install hatch + + # TODO: remove, once dependencies are updated + - run: hatch run python -m pip list + - run: hatch run python -m pip list --outdated + - name: Run test suite with coverage run: hatch run cov diff --git a/pyproject.toml b/pyproject.toml index f52db352..acf600e5 100644 --- a/pyproject.toml +++ b/pyproject.toml @@ -17,33 +17,31 @@ classifiers = [ "Topic :: Scientific/Engineering :: Information Analysis" ] dependencies = [ - "beautifulsoup4~=4.8.2", - "configparser~=5.0.2", - "connexion[swagger-ui]~=2.9.0", + "beautifulsoup4~=4.12", + "configparser~=6.0", + "connexion[swagger-ui]~=2.10.0", "extruct~=0.13.0", "feedparser~=6.0.8", - "flask~=1.1.4", - "flask-cors~=3.0.10", + "flask~=2.2.5", # pin due to flask 2.3.0 json_encoder issue + "flask-cors~=4.0", "flask-limiter<=2.0.0", "hashid~=3.1.4", - "idutils~=1.1.5", - "jmespath~=0.10.0", - "levenshtein~=0.12.0", - "lxml~=4.7", - "markupsafe~=2.0.1", + "idutils~=1.2", + "jmespath~=1.0", + "levenshtein~=0.21.1", + "lxml~=4.9", "pandas~=1.3", "pyRdfa3~=3.5.3", "pyld~=2.0.3", - "pyyaml!=6.0.0,!=5.4.0,!=5.4.1", - "rapidfuzz~=3.1.2", + "pyyaml!=6.0.0,!=5.4.0,!=5.4.1", # 6.0.1 + "rapidfuzz~=3.3", "rdflib~=6.1.1", - "requests~=2.24.0", + "requests~=2.31", "sparqlwrapper~=1.8.5", "tika~=1.24", "tldextract~=3.1.2", "urlextract~=1.2.0", - "waitress~=2.1.1", - "werkzeug~=1.0" + "waitress~=2.1" ] description = "FUJI (FAIRsFAIR Data Objects Assessment Service), A service to evaluate FAIR data objects based on FAIRsFAIR Metrics" keywords = [ diff --git a/tests/controllers/cassettes/test_fair_check/test_harvest_all_metadata.yaml b/tests/controllers/cassettes/test_fair_check/test_harvest_all_metadata.yaml index 93d7b41b..f3b3109d 100644 --- a/tests/controllers/cassettes/test_fair_check/test_harvest_all_metadata.yaml +++ b/tests/controllers/cassettes/test_fair_check/test_harvest_all_metadata.yaml @@ -19,7 +19,7 @@ interactions: CF-Cache-Status: - DYNAMIC CF-RAY: - - 80a38865dc629250-FRA + - 80c534140cce8ff4-FRA Connection: - close Content-Length: @@ -27,11 +27,11 @@ interactions: Content-Type: - text/html;charset=utf-8 Date: - - Thu, 21 Sep 2023 16:02:29 GMT + - Mon, 25 Sep 2023 18:06:51 GMT NEL: - '{"success_fraction":0,"report_to":"cf-nel","max_age":604800}' Report-To: - - '{"endpoints":[{"url":"https:\/\/a.nel.cloudflare.com\/report\/v3?s=jyX1Zm4jIzTjPZeGP1qVQ9GU7ECsOTnG3V3oPmGAd2lEqjVLaXXNgJ%2Fc4WfUKMqw%2FzeVAnd3WMLPszeUGADuC0l0%2FBPn5Xtu5aTdOdkeS3hz3ISmkLcb%2B002iV%2FPLqpwlHk0jq8%3D"}],"group":"cf-nel","max_age":604800}' + - '{"endpoints":[{"url":"https:\/\/a.nel.cloudflare.com\/report\/v3?s=YigJehdsXxQK9T%2FruwmsPM2cia7fZIavlhTnk8i3xEAyVI2%2BZRWiXrANY1HkHMhYY9I%2Fbt4r8WmhNsVm69HfujVUcMyrqFynBpj5YSRc9bi0hc2GJHTTjC0qWNrnPwyeGL0JSVw%3D"}],"group":"cf-nel","max_age":604800}' Server: - cloudflare Strict-Transport-Security: @@ -39,7 +39,7 @@ interactions: alt-svc: - h3=":443"; ma=86400 expires: - - Thu, 21 Sep 2023 16:29:33 GMT + - Mon, 25 Sep 2023 18:56:30 GMT location: - https://doi.pangaea.de/10.1594/PANGAEA.902845 permissions-policy: @@ -64,7 +64,7 @@ interactions: uri: https://doi.pangaea.de/10.1594/PANGAEA.902845 response: body: - string: "\r\n\r\n\n\r\n\r\n\n\n\n\r\n\r\n\r\n\r\n\r\n\n\n\n\n\n\nBärfuss, K et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\r\n\r\n\r\n
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Citation:
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Bärfuss, Konrad; Hankers, Rudolf; Bitter, Mark; Feuerle, Thomas; Schulz, Helmut; Rausch, Thomas; Platis, Andreas; Bange, Jens; Lampert, Astrid (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight. PANGAEA, https://doi.org/10.1594/PANGAEA.902845

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Always quote citation above when using data! You can download the citation in several formats below.

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RIS CitationBibTeX CitationText Citation Facebook TwitterShow MapGoogle Earth

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Abstract:
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Offshore wind parks interact with the marine atmospheric boundary layer and can create long downstream wakes of reduced wind speed and changed turbulence. During the project WIPAFF (wind park far field) funded by the German Federal Ministry for Economic Affairs and Energy (grant number 0325783B), 41 measurement flights were performed with the research aircraft Dornier-128 of TU Braunschweig between September 2016 and October 2017. The aircraft recorded in-situ meteorological parameters (wind vector, temperature, humidity) and sea surface properties (temperature, elevation standard deviation)
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The flights comprise vertical soundings and straight legs upstream, downstream and above wind parks for different synoptic conditions.
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Keyword(s):
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airborne measurements; German Bight; meteorological parameters; offshore wind park; sea surface; wake
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Related to:
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Platis, Andreas; Siedersleben, Simon K; Bange, Jens; Lampert, Astrid; Bärfuss, Konrad; Hankers, Rudolf; Cañadillas, Beatriz; Foreman, Richard; Schulz-Stellenfleth, Johannes; Djath, Bughsin; Neumann, Thomas; Emeis, Stefan (2018): First in situ evidence of wakes in the far field behind offshore wind farms. Scientific Reports, 8(1), https://doi.org/10.1038/s41598-018-20389-y
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Siedersleben, Simon K; Lundquist, Julie K; Platis, Andreas; Bange, Jens; Bärfuss, Konrad; Lampert, Astrid; Cañadillas, Beatriz; Neumann, Thomas; Emeis, Stefan (2018): Micrometeorological impacts of offshore wind farms as seen in observations and simulations. Environmental Research Letters, 13(12), 124012, https://doi.org/10.1088/1748-9326/aaea0b
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Siedersleben, Simon K; Platis, Andreas; Lundquist, Julie K; Lampert, Astrid; Bärfuss, Konrad; Cañadillas, Beatriz; Djath, Bughsin; Schulz-Stellenfleth, Johannes; Bange, Jens; Neumann, Thomas; Emeis, Stefan (2018): Evaluation of a Wind Farm Parametrization for Mesoscale Atmospheric Flow Models with Aircraft Measurements. Meteorologische Zeitschrift, 27(5), 401-415, https://doi.org/10.1127/metz/2018/0900
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Project(s):
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Wind Park Far Field (WIPAFF)
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Funding:
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Federal Ministry for Economic Affairs and Energy (BMWi), grant/award no. 0325783B: Wind Park Far Field / Wind Plant Far Field
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Coverage:
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Median Latitude: 54.109454 * Median Longitude: 7.542533 * South-bound Latitude: 53.452294 * West-bound Longitude: 6.516988 * North-bound Latitude: 54.993339 * East-bound Longitude: 9.158623
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Date/Time Start: 2016-09-06T12:13:11 * Date/Time End: 2017-10-15T15:51:13
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Size:
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41 datasets
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Download Data

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Download ZIP file containing all datasets as tab-delimited text — use the following character encoding: \n

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Datasets listed in this publication series

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  1. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20160906_flight01. https://doi.org/10.1594/PANGAEA.902843
  2. \n\n
  3. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20160907_flight02. https://doi.org/10.1594/PANGAEA.902877
  4. \n\n
  5. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20160907_flight03. https://doi.org/10.1594/PANGAEA.902859
  6. \n\n
  7. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20160908_flight04. https://doi.org/10.1594/PANGAEA.902906
  8. \n\n
  9. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20160909_flight05. https://doi.org/10.1594/PANGAEA.902909
  10. \n\n
  11. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20160909_flight06. https://doi.org/10.1594/PANGAEA.902910
  12. \n\n
  13. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20160910_flight07. https://doi.org/10.1594/PANGAEA.902914
  14. \n\n
  15. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20160910_flight08. https://doi.org/10.1594/PANGAEA.902916
  16. \n\n
  17. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170330_flight09. https://doi.org/10.1594/PANGAEA.902918
  18. \n\n
  19. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170331_flight10. https://doi.org/10.1594/PANGAEA.902924
  20. \n\n
  21. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170405_flight11. https://doi.org/10.1594/PANGAEA.902927
  22. \n\n
  23. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170406_flight12. https://doi.org/10.1594/PANGAEA.902930
  24. \n\n
  25. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170409_flight13. https://doi.org/10.1594/PANGAEA.902981
  26. \n\n
  27. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170409_flight14. https://doi.org/10.1594/PANGAEA.902989
  28. \n\n
  29. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170411_flight15. https://doi.org/10.1594/PANGAEA.902982
  30. \n\n
  31. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170411_flight16. https://doi.org/10.1594/PANGAEA.902990
  32. \n\n
  33. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170413_flight17. https://doi.org/10.1594/PANGAEA.902996
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  35. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170517_flight18. https://doi.org/10.1594/PANGAEA.903002
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  37. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170517_flight19. https://doi.org/10.1594/PANGAEA.903010
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  39. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170523_flight20. https://doi.org/10.1594/PANGAEA.903024
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  41. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170523_flight21. https://doi.org/10.1594/PANGAEA.903052
  42. \n\n
  43. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170524_flight22. https://doi.org/10.1594/PANGAEA.903057
  44. \n\n
  45. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170524_flight23. https://doi.org/10.1594/PANGAEA.903061
  46. \n\n
  47. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170527_flight24. https://doi.org/10.1594/PANGAEA.903062
  48. \n\n
  49. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170527_flight25. https://doi.org/10.1594/PANGAEA.903064
  50. \n\n
  51. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170531_flight26. https://doi.org/10.1594/PANGAEA.903070
  52. \n\n
  53. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170531_flight27. https://doi.org/10.1594/PANGAEA.903072
  54. \n\n
  55. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170601_flight28. https://doi.org/10.1594/PANGAEA.903075
  56. \n\n
  57. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170602_flight29. https://doi.org/10.1594/PANGAEA.903078
  58. \n\n
  59. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170808_flight30. https://doi.org/10.1594/PANGAEA.903330
  60. \n\n
  61. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170808_flight31. https://doi.org/10.1594/PANGAEA.903060
  62. \n\n
  63. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170809_flight32. https://doi.org/10.1594/PANGAEA.903063
  64. \n\n
  65. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170809_flight33. https://doi.org/10.1594/PANGAEA.903069
  66. \n\n
  67. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170810_flight34. https://doi.org/10.1594/PANGAEA.903074
  68. \n\n
  69. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170814_flight35. https://doi.org/10.1594/PANGAEA.903079
  70. \n\n
  71. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170814_flight36. https://doi.org/10.1594/PANGAEA.903082
  72. \n\n
  73. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170815_flight37. https://doi.org/10.1594/PANGAEA.903096
  74. \n\n
  75. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170817_flight38. https://doi.org/10.1594/PANGAEA.903081
  76. \n\n
  77. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20171014_flight39. https://doi.org/10.1594/PANGAEA.903088
  78. \n\n
  79. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20171015_flight40. https://doi.org/10.1594/PANGAEA.902713
  80. \n\n
  81. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20171015_flight41. https://doi.org/10.1594/PANGAEA.902834
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Citation:
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Bärfuss, Konrad; Hankers, Rudolf; Bitter, Mark; Feuerle, Thomas; Schulz, Helmut; Rausch, Thomas; Platis, Andreas; Bange, Jens; Lampert, Astrid (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight. PANGAEA, https://doi.org/10.1594/PANGAEA.902845

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Always quote citation above when using data! You can download the citation in several formats below.

\n

RIS CitationBibTeX CitationText Citation Facebook TwitterShow MapGoogle Earth

\n
\n
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Abstract:
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Offshore wind parks interact with the marine atmospheric boundary layer and can create long downstream wakes of reduced wind speed and changed turbulence. During the project WIPAFF (wind park far field) funded by the German Federal Ministry for Economic Affairs and Energy (grant number 0325783B), 41 measurement flights were performed with the research aircraft Dornier-128 of TU Braunschweig between September 2016 and October 2017. The aircraft recorded in-situ meteorological parameters (wind vector, temperature, humidity) and sea surface properties (temperature, elevation standard deviation)
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The flights comprise vertical soundings and straight legs upstream, downstream and above wind parks for different synoptic conditions.
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Keyword(s):
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airborne measurements; German Bight; meteorological parameters; offshore wind park; sea surface; wake
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Related to:
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Platis, Andreas; Siedersleben, Simon K; Bange, Jens; Lampert, Astrid; Bärfuss, Konrad; Hankers, Rudolf; Cañadillas, Beatriz; Foreman, Richard; Schulz-Stellenfleth, Johannes; Djath, Bughsin; Neumann, Thomas; Emeis, Stefan (2018): First in situ evidence of wakes in the far field behind offshore wind farms. Scientific Reports, 8(1), https://doi.org/10.1038/s41598-018-20389-y
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Siedersleben, Simon K; Lundquist, Julie K; Platis, Andreas; Bange, Jens; Bärfuss, Konrad; Lampert, Astrid; Cañadillas, Beatriz; Neumann, Thomas; Emeis, Stefan (2018): Micrometeorological impacts of offshore wind farms as seen in observations and simulations. Environmental Research Letters, 13(12), 124012, https://doi.org/10.1088/1748-9326/aaea0b
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Siedersleben, Simon K; Platis, Andreas; Lundquist, Julie K; Lampert, Astrid; Bärfuss, Konrad; Cañadillas, Beatriz; Djath, Bughsin; Schulz-Stellenfleth, Johannes; Bange, Jens; Neumann, Thomas; Emeis, Stefan (2018): Evaluation of a Wind Farm Parametrization for Mesoscale Atmospheric Flow Models with Aircraft Measurements. Meteorologische Zeitschrift, 27(5), 401-415, https://doi.org/10.1127/metz/2018/0900
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Project(s):
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Wind Park Far Field (WIPAFF)
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Funding:
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Federal Ministry for Economic Affairs and Energy (BMWi), grant/award no. 0325783B: Wind Park Far Field / Wind Plant Far Field
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Coverage:
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Median Latitude: 54.109454 * Median Longitude: 7.542533 * South-bound Latitude: 53.452294 * West-bound Longitude: 6.516988 * North-bound Latitude: 54.993339 * East-bound Longitude: 9.158623
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Date/Time Start: 2016-09-06T12:13:11 * Date/Time End: 2017-10-15T15:51:13
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Size:
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41 datasets
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Download Data

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Download ZIP file containing all datasets as tab-delimited text — use the following character encoding: \n

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Datasets listed in this publication series

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  1. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20160906_flight01. https://doi.org/10.1594/PANGAEA.902843
  2. \n\n
  3. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20160907_flight02. https://doi.org/10.1594/PANGAEA.902877
  4. \n\n
  5. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20160907_flight03. https://doi.org/10.1594/PANGAEA.902859
  6. \n\n
  7. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20160908_flight04. https://doi.org/10.1594/PANGAEA.902906
  8. \n\n
  9. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20160909_flight05. https://doi.org/10.1594/PANGAEA.902909
  10. \n\n
  11. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20160909_flight06. https://doi.org/10.1594/PANGAEA.902910
  12. \n\n
  13. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20160910_flight07. https://doi.org/10.1594/PANGAEA.902914
  14. \n\n
  15. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20160910_flight08. https://doi.org/10.1594/PANGAEA.902916
  16. \n\n
  17. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170330_flight09. https://doi.org/10.1594/PANGAEA.902918
  18. \n\n
  19. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170331_flight10. https://doi.org/10.1594/PANGAEA.902924
  20. \n\n
  21. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170405_flight11. https://doi.org/10.1594/PANGAEA.902927
  22. \n\n
  23. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170406_flight12. https://doi.org/10.1594/PANGAEA.902930
  24. \n\n
  25. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170409_flight13. https://doi.org/10.1594/PANGAEA.902981
  26. \n\n
  27. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170409_flight14. https://doi.org/10.1594/PANGAEA.902989
  28. \n\n
  29. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170411_flight15. https://doi.org/10.1594/PANGAEA.902982
  30. \n\n
  31. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170411_flight16. https://doi.org/10.1594/PANGAEA.902990
  32. \n\n
  33. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170413_flight17. https://doi.org/10.1594/PANGAEA.902996
  34. \n\n
  35. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170517_flight18. https://doi.org/10.1594/PANGAEA.903002
  36. \n\n
  37. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170517_flight19. https://doi.org/10.1594/PANGAEA.903010
  38. \n\n
  39. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170523_flight20. https://doi.org/10.1594/PANGAEA.903024
  40. \n\n
  41. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170523_flight21. https://doi.org/10.1594/PANGAEA.903052
  42. \n\n
  43. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170524_flight22. https://doi.org/10.1594/PANGAEA.903057
  44. \n\n
  45. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170524_flight23. https://doi.org/10.1594/PANGAEA.903061
  46. \n\n
  47. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170527_flight24. https://doi.org/10.1594/PANGAEA.903062
  48. \n\n
  49. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170527_flight25. https://doi.org/10.1594/PANGAEA.903064
  50. \n\n
  51. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170531_flight26. https://doi.org/10.1594/PANGAEA.903070
  52. \n\n
  53. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170531_flight27. https://doi.org/10.1594/PANGAEA.903072
  54. \n\n
  55. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170601_flight28. https://doi.org/10.1594/PANGAEA.903075
  56. \n\n
  57. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170602_flight29. https://doi.org/10.1594/PANGAEA.903078
  58. \n\n
  59. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170808_flight30. https://doi.org/10.1594/PANGAEA.903330
  60. \n\n
  61. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170808_flight31. https://doi.org/10.1594/PANGAEA.903060
  62. \n\n
  63. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170809_flight32. https://doi.org/10.1594/PANGAEA.903063
  64. \n\n
  65. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170809_flight33. https://doi.org/10.1594/PANGAEA.903069
  66. \n\n
  67. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170810_flight34. https://doi.org/10.1594/PANGAEA.903074
  68. \n\n
  69. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170814_flight35. https://doi.org/10.1594/PANGAEA.903079
  70. \n\n
  71. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170814_flight36. https://doi.org/10.1594/PANGAEA.903082
  72. \n\n
  73. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170815_flight37. https://doi.org/10.1594/PANGAEA.903096
  74. \n\n
  75. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170817_flight38. https://doi.org/10.1594/PANGAEA.903081
  76. \n\n
  77. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20171014_flight39. https://doi.org/10.1594/PANGAEA.903088
  78. \n\n
  79. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20171015_flight40. https://doi.org/10.1594/PANGAEA.902713
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  81. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20171015_flight41. https://doi.org/10.1594/PANGAEA.902834
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(2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\r\n\r\n\r\n
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Citation:
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Bärfuss, Konrad; Hankers, Rudolf; Bitter, Mark; Feuerle, Thomas; Schulz, Helmut; Rausch, Thomas; Platis, Andreas; Bange, Jens; Lampert, Astrid (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight. PANGAEA, https://doi.org/10.1594/PANGAEA.902845

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Always quote citation above when using data! You can download the citation in several formats below.

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RIS CitationBibTeX CitationText Citation Facebook TwitterShow MapGoogle Earth

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Abstract:
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Offshore wind parks interact with the marine atmospheric boundary layer and can create long downstream wakes of reduced wind speed and changed turbulence. During the project WIPAFF (wind park far field) funded by the German Federal Ministry for Economic Affairs and Energy (grant number 0325783B), 41 measurement flights were performed with the research aircraft Dornier-128 of TU Braunschweig between September 2016 and October 2017. The aircraft recorded in-situ meteorological parameters (wind vector, temperature, humidity) and sea surface properties (temperature, elevation standard deviation)
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The flights comprise vertical soundings and straight legs upstream, downstream and above wind parks for different synoptic conditions.
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Keyword(s):
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airborne measurements; German Bight; meteorological parameters; offshore wind park; sea surface; wake
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Related to:
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Platis, Andreas; Siedersleben, Simon K; Bange, Jens; Lampert, Astrid; Bärfuss, Konrad; Hankers, Rudolf; Cañadillas, Beatriz; Foreman, Richard; Schulz-Stellenfleth, Johannes; Djath, Bughsin; Neumann, Thomas; Emeis, Stefan (2018): First in situ evidence of wakes in the far field behind offshore wind farms. Scientific Reports, 8(1), https://doi.org/10.1038/s41598-018-20389-y
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Siedersleben, Simon K; Lundquist, Julie K; Platis, Andreas; Bange, Jens; Bärfuss, Konrad; Lampert, Astrid; Cañadillas, Beatriz; Neumann, Thomas; Emeis, Stefan (2018): Micrometeorological impacts of offshore wind farms as seen in observations and simulations. Environmental Research Letters, 13(12), 124012, https://doi.org/10.1088/1748-9326/aaea0b
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Siedersleben, Simon K; Platis, Andreas; Lundquist, Julie K; Lampert, Astrid; Bärfuss, Konrad; Cañadillas, Beatriz; Djath, Bughsin; Schulz-Stellenfleth, Johannes; Bange, Jens; Neumann, Thomas; Emeis, Stefan (2018): Evaluation of a Wind Farm Parametrization for Mesoscale Atmospheric Flow Models with Aircraft Measurements. Meteorologische Zeitschrift, 27(5), 401-415, https://doi.org/10.1127/metz/2018/0900
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Project(s):
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Wind Park Far Field (WIPAFF)
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Funding:
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Federal Ministry for Economic Affairs and Energy (BMWi), grant/award no. 0325783B: Wind Park Far Field / Wind Plant Far Field
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Coverage:
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Median Latitude: 54.109454 * Median Longitude: 7.542533 * South-bound Latitude: 53.452294 * West-bound Longitude: 6.516988 * North-bound Latitude: 54.993339 * East-bound Longitude: 9.158623
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Date/Time Start: 2016-09-06T12:13:11 * Date/Time End: 2017-10-15T15:51:13
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Size:
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41 datasets
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Download Data

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Download ZIP file containing all datasets as tab-delimited text — use the following character encoding: \n

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Datasets listed in this publication series

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  1. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20160906_flight01. https://doi.org/10.1594/PANGAEA.902843
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  3. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20160907_flight02. https://doi.org/10.1594/PANGAEA.902877
  4. \n\n
  5. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20160907_flight03. https://doi.org/10.1594/PANGAEA.902859
  6. \n\n
  7. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20160908_flight04. https://doi.org/10.1594/PANGAEA.902906
  8. \n\n
  9. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20160909_flight05. https://doi.org/10.1594/PANGAEA.902909
  10. \n\n
  11. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20160909_flight06. https://doi.org/10.1594/PANGAEA.902910
  12. \n\n
  13. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20160910_flight07. https://doi.org/10.1594/PANGAEA.902914
  14. \n\n
  15. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20160910_flight08. https://doi.org/10.1594/PANGAEA.902916
  16. \n\n
  17. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170330_flight09. https://doi.org/10.1594/PANGAEA.902918
  18. \n\n
  19. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170331_flight10. https://doi.org/10.1594/PANGAEA.902924
  20. \n\n
  21. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170405_flight11. https://doi.org/10.1594/PANGAEA.902927
  22. \n\n
  23. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170406_flight12. https://doi.org/10.1594/PANGAEA.902930
  24. \n\n
  25. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170409_flight13. https://doi.org/10.1594/PANGAEA.902981
  26. \n\n
  27. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170409_flight14. https://doi.org/10.1594/PANGAEA.902989
  28. \n\n
  29. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170411_flight15. https://doi.org/10.1594/PANGAEA.902982
  30. \n\n
  31. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170411_flight16. https://doi.org/10.1594/PANGAEA.902990
  32. \n\n
  33. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170413_flight17. https://doi.org/10.1594/PANGAEA.902996
  34. \n\n
  35. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170517_flight18. https://doi.org/10.1594/PANGAEA.903002
  36. \n\n
  37. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170517_flight19. https://doi.org/10.1594/PANGAEA.903010
  38. \n\n
  39. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170523_flight20. https://doi.org/10.1594/PANGAEA.903024
  40. \n\n
  41. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170523_flight21. https://doi.org/10.1594/PANGAEA.903052
  42. \n\n
  43. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170524_flight22. https://doi.org/10.1594/PANGAEA.903057
  44. \n\n
  45. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170524_flight23. https://doi.org/10.1594/PANGAEA.903061
  46. \n\n
  47. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170527_flight24. https://doi.org/10.1594/PANGAEA.903062
  48. \n\n
  49. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170527_flight25. https://doi.org/10.1594/PANGAEA.903064
  50. \n\n
  51. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170531_flight26. https://doi.org/10.1594/PANGAEA.903070
  52. \n\n
  53. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170531_flight27. https://doi.org/10.1594/PANGAEA.903072
  54. \n\n
  55. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170601_flight28. https://doi.org/10.1594/PANGAEA.903075
  56. \n\n
  57. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170602_flight29. https://doi.org/10.1594/PANGAEA.903078
  58. \n\n
  59. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170808_flight30. https://doi.org/10.1594/PANGAEA.903330
  60. \n\n
  61. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170808_flight31. https://doi.org/10.1594/PANGAEA.903060
  62. \n\n
  63. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170809_flight32. https://doi.org/10.1594/PANGAEA.903063
  64. \n\n
  65. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170809_flight33. https://doi.org/10.1594/PANGAEA.903069
  66. \n\n
  67. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170810_flight34. https://doi.org/10.1594/PANGAEA.903074
  68. \n\n
  69. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170814_flight35. https://doi.org/10.1594/PANGAEA.903079
  70. \n\n
  71. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170814_flight36. https://doi.org/10.1594/PANGAEA.903082
  72. \n\n
  73. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170815_flight37. https://doi.org/10.1594/PANGAEA.903096
  74. \n\n
  75. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170817_flight38. https://doi.org/10.1594/PANGAEA.903081
  76. \n\n
  77. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20171014_flight39. https://doi.org/10.1594/PANGAEA.903088
  78. \n\n
  79. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20171015_flight40. https://doi.org/10.1594/PANGAEA.902713
  80. \n\n
  81. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20171015_flight41. https://doi.org/10.1594/PANGAEA.902834
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\r\n Felden, J; Möller, L; Schindler, U; Huber, R; Schumacher, S; Koppe, R; Diepenbroek, M; Glöckner, FO (2023):\r\n PANGAEA – Data Publisher for Earth & Environmental Science. Scientific Data, 10(1), 347,\r\n https://doi.org/10.1038/s41597-023-02269-x\r\n

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Citation:
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Bärfuss, Konrad; Hankers, Rudolf; Bitter, Mark; Feuerle, Thomas; Schulz, Helmut; Rausch, Thomas; Platis, Andreas; Bange, Jens; Lampert, Astrid (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight. PANGAEA, https://doi.org/10.1594/PANGAEA.902845

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Always quote citation above when using data! You can download the citation in several formats below.

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RIS CitationBibTeX CitationText Citation Facebook TwitterShow MapGoogle Earth

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Abstract:
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Offshore wind parks interact with the marine atmospheric boundary layer and can create long downstream wakes of reduced wind speed and changed turbulence. During the project WIPAFF (wind park far field) funded by the German Federal Ministry for Economic Affairs and Energy (grant number 0325783B), 41 measurement flights were performed with the research aircraft Dornier-128 of TU Braunschweig between September 2016 and October 2017. The aircraft recorded in-situ meteorological parameters (wind vector, temperature, humidity) and sea surface properties (temperature, elevation standard deviation)
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The flights comprise vertical soundings and straight legs upstream, downstream and above wind parks for different synoptic conditions.
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Keyword(s):
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airborne measurements; German Bight; meteorological parameters; offshore wind park; sea surface; wake
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Related to:
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Platis, Andreas; Siedersleben, Simon K; Bange, Jens; Lampert, Astrid; Bärfuss, Konrad; Hankers, Rudolf; Cañadillas, Beatriz; Foreman, Richard; Schulz-Stellenfleth, Johannes; Djath, Bughsin; Neumann, Thomas; Emeis, Stefan (2018): First in situ evidence of wakes in the far field behind offshore wind farms. Scientific Reports, 8(1), https://doi.org/10.1038/s41598-018-20389-y
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Siedersleben, Simon K; Lundquist, Julie K; Platis, Andreas; Bange, Jens; Bärfuss, Konrad; Lampert, Astrid; Cañadillas, Beatriz; Neumann, Thomas; Emeis, Stefan (2018): Micrometeorological impacts of offshore wind farms as seen in observations and simulations. Environmental Research Letters, 13(12), 124012, https://doi.org/10.1088/1748-9326/aaea0b
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Siedersleben, Simon K; Platis, Andreas; Lundquist, Julie K; Lampert, Astrid; Bärfuss, Konrad; Cañadillas, Beatriz; Djath, Bughsin; Schulz-Stellenfleth, Johannes; Bange, Jens; Neumann, Thomas; Emeis, Stefan (2018): Evaluation of a Wind Farm Parametrization for Mesoscale Atmospheric Flow Models with Aircraft Measurements. Meteorologische Zeitschrift, 27(5), 401-415, https://doi.org/10.1127/metz/2018/0900
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Project(s):
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Wind Park Far Field (WIPAFF)
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Funding:
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Federal Ministry for Economic Affairs and Energy (BMWi), grant/award no. 0325783B: Wind Park Far Field / Wind Plant Far Field
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Coverage:
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Median Latitude: 54.109454 * Median Longitude: 7.542533 * South-bound Latitude: 53.452294 * West-bound Longitude: 6.516988 * North-bound Latitude: 54.993339 * East-bound Longitude: 9.158623
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Date/Time Start: 2016-09-06T12:13:11 * Date/Time End: 2017-10-15T15:51:13
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Size:
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41 datasets
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Download Data

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Download ZIP file containing all datasets as tab-delimited text — use the following character encoding: \n

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Datasets listed in this publication series

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    \n
  1. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20160906_flight01. https://doi.org/10.1594/PANGAEA.902843
  2. \n\n
  3. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20160907_flight02. https://doi.org/10.1594/PANGAEA.902877
  4. \n\n
  5. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20160907_flight03. https://doi.org/10.1594/PANGAEA.902859
  6. \n\n
  7. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20160908_flight04. https://doi.org/10.1594/PANGAEA.902906
  8. \n\n
  9. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20160909_flight05. https://doi.org/10.1594/PANGAEA.902909
  10. \n\n
  11. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20160909_flight06. https://doi.org/10.1594/PANGAEA.902910
  12. \n\n
  13. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20160910_flight07. https://doi.org/10.1594/PANGAEA.902914
  14. \n\n
  15. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20160910_flight08. https://doi.org/10.1594/PANGAEA.902916
  16. \n\n
  17. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170330_flight09. https://doi.org/10.1594/PANGAEA.902918
  18. \n\n
  19. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170331_flight10. https://doi.org/10.1594/PANGAEA.902924
  20. \n\n
  21. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170405_flight11. https://doi.org/10.1594/PANGAEA.902927
  22. \n\n
  23. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170406_flight12. https://doi.org/10.1594/PANGAEA.902930
  24. \n\n
  25. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170409_flight13. https://doi.org/10.1594/PANGAEA.902981
  26. \n\n
  27. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170409_flight14. https://doi.org/10.1594/PANGAEA.902989
  28. \n\n
  29. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170411_flight15. https://doi.org/10.1594/PANGAEA.902982
  30. \n\n
  31. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170411_flight16. https://doi.org/10.1594/PANGAEA.902990
  32. \n\n
  33. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170413_flight17. https://doi.org/10.1594/PANGAEA.902996
  34. \n\n
  35. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170517_flight18. https://doi.org/10.1594/PANGAEA.903002
  36. \n\n
  37. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170517_flight19. https://doi.org/10.1594/PANGAEA.903010
  38. \n\n
  39. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170523_flight20. https://doi.org/10.1594/PANGAEA.903024
  40. \n\n
  41. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170523_flight21. https://doi.org/10.1594/PANGAEA.903052
  42. \n\n
  43. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170524_flight22. https://doi.org/10.1594/PANGAEA.903057
  44. \n\n
  45. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170524_flight23. https://doi.org/10.1594/PANGAEA.903061
  46. \n\n
  47. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170527_flight24. https://doi.org/10.1594/PANGAEA.903062
  48. \n\n
  49. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170527_flight25. https://doi.org/10.1594/PANGAEA.903064
  50. \n\n
  51. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170531_flight26. https://doi.org/10.1594/PANGAEA.903070
  52. \n\n
  53. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170531_flight27. https://doi.org/10.1594/PANGAEA.903072
  54. \n\n
  55. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170601_flight28. https://doi.org/10.1594/PANGAEA.903075
  56. \n\n
  57. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170602_flight29. https://doi.org/10.1594/PANGAEA.903078
  58. \n\n
  59. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170808_flight30. https://doi.org/10.1594/PANGAEA.903330
  60. \n\n
  61. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170808_flight31. https://doi.org/10.1594/PANGAEA.903060
  62. \n\n
  63. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170809_flight32. https://doi.org/10.1594/PANGAEA.903063
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  65. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170809_flight33. https://doi.org/10.1594/PANGAEA.903069
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  67. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170810_flight34. https://doi.org/10.1594/PANGAEA.903074
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  69. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170814_flight35. https://doi.org/10.1594/PANGAEA.903079
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  71. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170814_flight36. https://doi.org/10.1594/PANGAEA.903082
  72. \n\n
  73. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170815_flight37. https://doi.org/10.1594/PANGAEA.903096
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  75. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20170817_flight38. https://doi.org/10.1594/PANGAEA.903081
  76. \n\n
  77. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20171014_flight39. https://doi.org/10.1594/PANGAEA.903088
  78. \n\n
  79. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20171015_flight40. https://doi.org/10.1594/PANGAEA.902713
  80. \n\n
  81. Bärfuss, K; Hankers, R; Bitter, M et al. (2019): In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German Bight, Flight 20171015_flight41. https://doi.org/10.1594/PANGAEA.902834
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\r\n Felden, J; Möller, L; Schindler, U; Huber, R; Schumacher, S; Koppe, R; Diepenbroek, M; Glöckner, FO (2023):\r\n PANGAEA – Data Publisher for Earth & Environmental Science. Scientific Data, 10(1), 347,\r\n https://doi.org/10.1038/s41597-023-02269-x\r\n

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6.5169889.15862353.45229454.993339Federal Ministry for Economic Affairs and Energyhttps://doi.org/10.13039/5011000063600325783BWind Park Far Field / Wind Plant Far Field
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The flights comprise vertical soundings and straight legs upstream, downstream and above wind parks for different synoptic conditions.
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ThomasThomasFeuerleSchulz, HelmutHelmutSchulzRausch, ThomasThomasRauschPlatis, AndreasAndreasPlatis0000-0002-9276-3587Bange, JensJensBange0000-0003-4075-1573Lampert, AstridAstridLampert0000-0003-1414-1616In-situ airborne measurements of atmospheric and sea surface parameters related to offshore wind parks in the German BightPANGAEA2019airborne measurementsGerman Bightmeteorological parametersoffshore wind parksea surfacewakeWind Park Far Field (WIPAFF)2016-09-06T12:13:11/2017-10-15T15:51:13enPublication Series of Datasets10.1038/s41598-018-20389-y10.1088/1748-9326/aaea0b10.1127/metz/2018/090041 datasetsapplication/zipCreative Commons Attribution 4.0 InternationalOffshore wind parks interact with the marine atmospheric boundary layer and can create long downstream wakes of reduced wind speed and changed turbulence. During the project WIPAFF (wind park far field) funded by the German Federal Ministry for Economic Affairs and Energy (grant number 0325783B), 41 measurement flights were performed with the research aircraft Dornier-128 of TU Braunschweig between September 2016 and October 2017. The aircraft recorded in-situ meteorological parameters (wind vector, temperature, humidity) and sea surface properties (temperature, elevation standard deviation)
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F-UJI - An Automated FAIR Data Assessment Tool

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\n\nDevaraju, Anusuriya; \n\nHuber, Robert

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FAIRsFAIR has developed F-UJI, a service based on REST, and is piloting a programmatic assessment of the FAIRness of research datasets in five trustworthy data repositories.
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F-UJI - An Automated FAIR Data Assessment Tool

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\n\nDevaraju, Anusuriya; \n\nHuber, Robert

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FAIRsFAIR has developed F-UJI, a service based on REST, and is piloting a programmatic assessment of the FAIRness of research datasets in five trustworthy data repositories.
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\n \n \n PANGAEA\n \n \n \n FAIRsFAIR\n \n \n \n FAIR Principles\n \n \n \n Data Object Assessment\n \n \n \n Swagger\n \n \n \n FAIR\n \n \n \n Research Data\n \n \n \n FAIR data\n \n \n \n Metadata harvesting\n \n
\n\n \n
Related identifiers:
\n
Supplement to
\n \n
\n
License (for files):
\n
MIT License
\n
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Versions

\n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n
\n Version v2.2.5 \n 10.5281/zenodo.8347772\n Sep 15, 2023
\n Version v.2.0.2 \n 10.5281/zenodo.7158512\n Oct 7, 2022
\n Version v1.4.9 \n 10.5281/zenodo.6552689\n May 16, 2022
\n Version v1.4.7 \n 10.5281/zenodo.6361401\n Mar 16, 2022
\n \n Cite all versions? You can cite all versions by using the DOI 10.5281/zenodo.6361400. This DOI represents all versions, and will always resolve to the latest one. Read more.\n \n
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Zenodo.org will be unavailable for 2 hours on September 29th from 06:00-08:00 UTC. See announcement.
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\n \n \n \nSoftware\n \n\nOpen Access\n\n \n

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F-UJI - An Automated FAIR Data Assessment Tool

\n

\n\nDevaraju, Anusuriya; \n\nHuber, Robert

\n
FAIRsFAIR has developed F-UJI, a service based on REST, and is piloting a programmatic assessment of the FAIRness of research datasets in five trustworthy data repositories.
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\n Please cite this software using these metadata.\n
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\n \n
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Unique downloads 60
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Publication date:
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September 15, 2023
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DOI:
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Zenodo DOI Badge

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https://doi.org/10.5281/zenodo.8347772
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Keyword(s):
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\n \n \n PANGAEA\n \n \n \n FAIRsFAIR\n \n \n \n FAIR Principles\n \n \n \n Data Object Assessment\n \n \n \n Swagger\n \n \n \n FAIR\n \n \n \n Research Data\n \n \n \n FAIR data\n \n \n \n Metadata harvesting\n \n
\n\n \n
Related identifiers:
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Supplement to
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\n
License (for files):
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MIT License
\n
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Versions

\n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n
\n Version v2.2.5 \n 10.5281/zenodo.8347772\n Sep 15, 2023
\n Version v.2.0.2 \n 10.5281/zenodo.7158512\n Oct 7, 2022
\n Version v1.4.9 \n 10.5281/zenodo.6552689\n May 16, 2022
\n Version v1.4.7 \n 10.5281/zenodo.6361401\n Mar 16, 2022
\n \n Cite all versions? You can cite all versions by using the DOI 10.5281/zenodo.6361400. This DOI represents all versions, and will always resolve to the latest one. Read more.\n \n
\n

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\n\n\n \n\n\n\n\n\n\n\n\n\n \n" + string: "\n\n\n \n\n\n\n\n \n \n\n\n F-UJI - An Automated FAIR Data Assessment Tool | Zenodo\n \n \n \n \n \n\n\n\n\n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n\n
\n \n\n\n \n \n
\n
UPDATE: Zenodo migration postponed to Oct 13 from 06:00-08:00 UTC. Read the announcement.
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\n
\n
\n
\n
\n

\n \n \n \nSoftware\n \n\nOpen Access\n\n \n

\n

F-UJI - An Automated FAIR Data Assessment Tool

\n

\n\nDevaraju, Anusuriya; \n\nHuber, Robert

\n
FAIRsFAIR has developed F-UJI, a service based on REST, and is piloting a programmatic assessment of the FAIRness of research datasets in five trustworthy data repositories.
\n
\n Please cite this software using these metadata.\n
\n\n\n
\n \n
\n \n
\n
\n
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All versionsThis version
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Downloads 60
Data volume 5.2 MB0 Bytes
Unique views 1199
Unique downloads 60
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September 15, 2023
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DOI:
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\n \n \"10.5281/zenodo.8347772\"\n \n \n
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Zenodo DOI Badge

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https://zenodo.org/badge/DOI/10.5281/zenodo.8347772.svg
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\n

\n
https://doi.org/10.5281/zenodo.8347772
\n

\n
\n
\n
\n
\n
\n
Keyword(s):
\n
\n \n \n PANGAEA\n \n \n \n FAIRsFAIR\n \n \n \n FAIR Principles\n \n \n \n Data Object Assessment\n \n \n \n Swagger\n \n \n \n FAIR\n \n \n \n Research Data\n \n \n \n FAIR data\n \n \n \n Metadata harvesting\n \n
\n\n \n
Related identifiers:
\n
Supplement to
\n \n
\n
License (for files):
\n
MIT License
\n
\n
\n
\n

Versions

\n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n
\n Version v2.2.5 \n 10.5281/zenodo.8347772\n Sep 15, 2023
\n Version v.2.0.2 \n 10.5281/zenodo.7158512\n Oct 7, 2022
\n Version v1.4.9 \n 10.5281/zenodo.6552689\n May 16, 2022
\n Version v1.4.7 \n 10.5281/zenodo.6361401\n Mar 16, 2022
\n \n Cite all versions? You can cite all versions by using the DOI 10.5281/zenodo.6361400. This DOI represents all versions, and will always resolve to the latest one. Read more.\n \n
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\n\n\n \n\n\n\n\n\n\n\n\n\n \n" headers: Connection: - close Content-Length: - - '31668' + - '31684' Content-Type: - text/html; charset=utf-8 Date: - - Fri, 22 Sep 2023 05:04:15 GMT + - Mon, 25 Sep 2023 18:07:14 GMT Referrer-Policy: - strict-origin-when-cross-origin Retry-After: @@ -602,7 +602,7 @@ interactions: Server: - nginx Set-Cookie: - - session=b6963dd9ce0945e1_650d204f.ERZ6eihZ51tWhZnHl5oQZYZtmT4; Expires=Mon, 23-Oct-2023 05:04:15 GMT; Secure; HttpOnly; Path=/ + - session=30a0b11810e1e724_6511cc52.eY6EgKgPqSUdNsVZeI93_wk-58c; Expires=Thu, 26-Oct-2023 18:07:14 GMT; Secure; HttpOnly; Path=/ Strict-Transport-Security: - max-age=0 Vary: @@ -614,13 +614,13 @@ interactions: X-RateLimit-Limit: - '60' X-RateLimit-Remaining: - - '53' + - '58' X-RateLimit-Reset: - - '1695359115' + - '1695665294' X-Request-ID: - - 1fbbe121eb3aa4bf8a17ae7a313a2bec + - 329c0d9d15ccf7d8d5d064f4a2a0b0c8 X-Session-ID: - - b6963dd9ce0945e1_650d204f + - 30a0b11810e1e724_6511cc52 X-XSS-Protection: - 1; mode=block status: @@ -641,80 +641,24 @@ interactions: uri: https://zenodo.org/record/8347772 response: body: - string: "\n\n\n \n\n\n\n\n \n \n\n\n F-UJI - An Automated FAIR Data Assessment Tool | Zenodo\n \n \n \n \n \n\n\n\n\n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n\n
\n \n\n\n \n \n
\n
Zenodo.org will be unavailable for 2 hours on September 29th from 06:00-08:00 UTC. See announcement.
\n
\n
\n
\n
\n
\n

\n \n \n \nSoftware\n \n\nOpen Access\n\n \n

\n

F-UJI - An Automated FAIR Data Assessment Tool

\n

\n\nDevaraju, Anusuriya; \n\nHuber, Robert

\n
FAIRsFAIR has developed F-UJI, a service based on REST, and is piloting a programmatic assessment of the FAIRness of research datasets in five trustworthy data repositories.
\n
\n Please cite this software using these metadata.\n
\n\n\n
\n \n
\n \n
\n
\n
\n \n Files\n \n \n \n (1.6 MB)\n
\n
\n \n \n \n \n \n \n \n \n \n \n \n \n \n
NameSize
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1.6 MB Download
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Views 15710
Downloads 60
Data volume 5.2 MB0 Bytes
Unique views 1144
Unique downloads 60
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\n
\n
\n
\n \n Available in\n \n Indexed in\n \n \n \n
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\n
Publication date:
\n
September 15, 2023
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DOI:
\n
\n \n \"10.5281/zenodo.8347772\"\n \n \n
\n
\n
\n
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Zenodo DOI Badge

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<a href=\"https://doi.org/10.5281/zenodo.8347772\"><img src=\"https://zenodo.org/badge/DOI/10.5281/zenodo.8347772.svg\" alt=\"DOI\"></a>
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\n

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https://zenodo.org/badge/DOI/10.5281/zenodo.8347772.svg
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\n

\n
https://doi.org/10.5281/zenodo.8347772
\n

\n
\n
\n
\n
\n
\n
Keyword(s):
\n
\n \n \n PANGAEA\n \n \n \n FAIRsFAIR\n \n \n \n FAIR Principles\n \n \n \n Data Object Assessment\n \n \n \n Swagger\n \n \n \n FAIR\n \n \n \n Research Data\n \n \n \n FAIR data\n \n \n \n Metadata harvesting\n \n
\n\n \n
Related identifiers:
\n
Supplement to
\n \n
\n
License (for files):
\n
MIT License
\n
\n
\n
\n

Versions

\n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n
\n Version v2.2.5 \n 10.5281/zenodo.8347772\n Sep 15, 2023
\n Version v.2.0.2 \n 10.5281/zenodo.7158512\n Oct 7, 2022
\n Version v1.4.9 \n 10.5281/zenodo.6552689\n May 16, 2022
\n Version v1.4.7 \n 10.5281/zenodo.6361401\n Mar 16, 2022
\n \n Cite all versions? You can cite all versions by using the DOI 10.5281/zenodo.6361400. This DOI represents all versions, and will always resolve to the latest one. Read more.\n \n
\n

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\n
\n\n\n \n\n\n\n\n\n\n\n\n\n \n" + string: "\n\n\n \n\n\n\n\n \n \n\n\n F-UJI - An Automated FAIR Data Assessment Tool | Zenodo\n \n \n \n \n \n\n\n\n\n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n\n
\n \n\n\n \n \n
\n
UPDATE: Zenodo migration postponed to Oct 13 from 06:00-08:00 UTC. Read the announcement.
\n
\n
\n
\n
\n
\n

\n \n \n \nSoftware\n \n\nOpen Access\n\n \n

\n

F-UJI - An Automated FAIR Data Assessment Tool

\n

\n\nDevaraju, Anusuriya; \n\nHuber, Robert

\n
FAIRsFAIR has developed F-UJI, a service based on REST, and is piloting a programmatic assessment of the FAIRness of research datasets in five trustworthy data repositories.
\n
\n Please cite this software using these metadata.\n
\n\n\n
\n \n
\n \n
\n
\n
\n \n Files\n \n \n \n (1.6 MB)\n
\n
\n \n \n \n \n \n \n \n \n \n \n \n \n \n
NameSize
\n pangaea-data-publisher/fuji-v2.2.5.zip\n
md5:3c016a1b48621806b1e423e2b7989e4a \n
1.6 MB Download
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\n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n
All versionsThis version
Views 17325
Downloads 60
Data volume 5.2 MB0 Bytes
Unique views 1199
Unique downloads 60
\n \n
\n
\n
\n
\n
\n \n Available in\n \n Indexed in\n \n \n \n
\n
\n
Publication date:
\n
September 15, 2023
\n
DOI:
\n
\n \n \"10.5281/zenodo.8347772\"\n \n \n
\n
\n
\n
\n

Zenodo DOI Badge

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\n DOI\n

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10.5281/zenodo.8347772
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https://doi.org/10.5281/zenodo.8347772
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\n \n \n PANGAEA\n \n \n \n FAIRsFAIR\n \n \n \n FAIR Principles\n \n \n \n Data Object Assessment\n \n \n \n Swagger\n \n \n \n FAIR\n \n \n \n Research Data\n \n \n \n FAIR data\n \n \n \n Metadata harvesting\n \n
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License (for files):
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MIT License
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Versions

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\n Version v2.2.5 \n 10.5281/zenodo.8347772\n Sep 15, 2023
\n Version v.2.0.2 \n 10.5281/zenodo.7158512\n Oct 7, 2022
\n Version v1.4.9 \n 10.5281/zenodo.6552689\n May 16, 2022
\n Version v1.4.7 \n 10.5281/zenodo.6361401\n Mar 16, 2022
\n \n Cite all versions? You can cite all versions by using the DOI 10.5281/zenodo.6361400. This DOI represents all versions, and will always resolve to the latest one. Read more.\n \n
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F-UJI - An Automated FAIR Data Assessment Tool

\n

\n\nDevaraju, Anusuriya; \n\nHuber, Robert

\n
FAIRsFAIR has developed F-UJI, a service based on REST, and is piloting a programmatic assessment of the FAIRness of research datasets in five trustworthy data repositories.
\n
\n Please cite this software using these metadata.\n
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<a href=\"https://doi.org/10.5281/zenodo.8347772\"><img src=\"https://zenodo.org/badge/DOI/10.5281/zenodo.8347772.svg\" alt=\"DOI\"></a>
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https://doi.org/10.5281/zenodo.8347772
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Keyword(s):
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Supplement to
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MIT License
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\n Version v.2.0.2 \n 10.5281/zenodo.7158512\n Oct 7, 2022
\n Version v1.4.9 \n 10.5281/zenodo.6552689\n May 16, 2022
\n Version v1.4.7 \n 10.5281/zenodo.6361401\n Mar 16, 2022
\n \n Cite all versions? You can cite all versions by using the DOI 10.5281/zenodo.6361400. This DOI represents all versions, and will always resolve to the latest one. Read more.\n \n
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Zenodo.org will be unavailable for 2 hours on September 29th from 06:00-08:00 UTC. See announcement.
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\n \n \n \nSoftware\n \n\nOpen Access\n\n \n

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F-UJI - An Automated FAIR Data Assessment Tool

\n

\n\nDevaraju, Anusuriya; \n\nHuber, Robert

\n
FAIRsFAIR has developed F-UJI, a service based on REST, and is piloting a programmatic assessment of the FAIRness of research datasets in five trustworthy data repositories.
\n
\n Please cite this software using these metadata.\n
\n\n\n
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Unique downloads 60
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DOI:
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<a href=\"https://doi.org/10.5281/zenodo.8347772\"><img src=\"https://zenodo.org/badge/DOI/10.5281/zenodo.8347772.svg\" alt=\"DOI\"></a>
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https://zenodo.org/badge/DOI/10.5281/zenodo.8347772.svg
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https://doi.org/10.5281/zenodo.8347772
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Keyword(s):
\n
\n \n \n PANGAEA\n \n \n \n FAIRsFAIR\n \n \n \n FAIR Principles\n \n \n \n Data Object Assessment\n \n \n \n Swagger\n \n \n \n FAIR\n \n \n \n Research Data\n \n \n \n FAIR data\n \n \n \n Metadata harvesting\n \n
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Related identifiers:
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Supplement to
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License (for files):
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MIT License
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Versions

\n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n
\n Version v2.2.5 \n 10.5281/zenodo.8347772\n Sep 15, 2023
\n Version v.2.0.2 \n 10.5281/zenodo.7158512\n Oct 7, 2022
\n Version v1.4.9 \n 10.5281/zenodo.6552689\n May 16, 2022
\n Version v1.4.7 \n 10.5281/zenodo.6361401\n Mar 16, 2022
\n \n Cite all versions? You can cite all versions by using the DOI 10.5281/zenodo.6361400. This DOI represents all versions, and will always resolve to the latest one. Read more.\n \n
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\n\n\n \n\n\n\n\n\n\n\n\n\n \n" + string: "\n\n\n \n\n\n\n\n \n \n\n\n F-UJI - An Automated FAIR Data Assessment Tool | Zenodo\n \n \n \n \n \n\n\n\n\n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n\n
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UPDATE: Zenodo migration postponed to Oct 13 from 06:00-08:00 UTC. Read the announcement.
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\n \n \n \nSoftware\n \n\nOpen Access\n\n \n

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F-UJI - An Automated FAIR Data Assessment Tool

\n

\n\nDevaraju, Anusuriya; \n\nHuber, Robert

\n
FAIRsFAIR has developed F-UJI, a service based on REST, and is piloting a programmatic assessment of the FAIRness of research datasets in five trustworthy data repositories.
\n
\n Please cite this software using these metadata.\n
\n\n\n
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Downloads 60
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Unique downloads 60
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Publication date:
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September 15, 2023
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DOI:
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Zenodo DOI Badge

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<a href=\"https://doi.org/10.5281/zenodo.8347772\"><img src=\"https://zenodo.org/badge/DOI/10.5281/zenodo.8347772.svg\" alt=\"DOI\"></a>
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https://zenodo.org/badge/DOI/10.5281/zenodo.8347772.svg
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https://doi.org/10.5281/zenodo.8347772
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Keyword(s):
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\n \n \n PANGAEA\n \n \n \n FAIRsFAIR\n \n \n \n FAIR Principles\n \n \n \n Data Object Assessment\n \n \n \n Swagger\n \n \n \n FAIR\n \n \n \n Research Data\n \n \n \n FAIR data\n \n \n \n Metadata harvesting\n \n
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Related identifiers:
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Supplement to
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License (for files):
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MIT License
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Versions

\n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n \n
\n Version v2.2.5 \n 10.5281/zenodo.8347772\n Sep 15, 2023
\n Version v.2.0.2 \n 10.5281/zenodo.7158512\n Oct 7, 2022
\n Version v1.4.9 \n 10.5281/zenodo.6552689\n May 16, 2022
\n Version v1.4.7 \n 10.5281/zenodo.6361401\n Mar 16, 2022
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UPDATE: Zenodo migration postponed to Oct 13 from 06:00-08:00 UTC. Read the announcement.
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\n \n \n \nSoftware\n \n\nOpen Access\n\n \n

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F-UJI - An Automated FAIR Data Assessment Tool

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\n\nDevaraju, Anusuriya; \n\nHuber, Robert

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FAIRsFAIR has developed F-UJI, a service based on REST, and is piloting a programmatic assessment of the FAIRness of research datasets in five trustworthy data repositories.
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\n Please cite this software using these metadata.\n
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\n \n Files\n \n \n \n (1.6 MB)\n
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\n pangaea-data-publisher/fuji-v2.2.5.zip\n
md5:3c016a1b48621806b1e423e2b7989e4a \n
1.6 MB Download
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All versionsThis version
Views 17325
Downloads 60
Data volume 5.2 MB0 Bytes
Unique views 1199
Unique downloads 60
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Publication date:
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September 15, 2023
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DOI:
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\n \n \"10.5281/zenodo.8347772\"\n \n \n
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Zenodo DOI Badge

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10.5281/zenodo.8347772
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[![DOI](https://zenodo.org/badge/DOI/10.5281/zenodo.8347772.svg)](https://doi.org/10.5281/zenodo.8347772)
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.. image:: https://zenodo.org/badge/DOI/10.5281/zenodo.8347772.svg\n   :target: https://doi.org/10.5281/zenodo.8347772
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<a href=\"https://doi.org/10.5281/zenodo.8347772\"><img src=\"https://zenodo.org/badge/DOI/10.5281/zenodo.8347772.svg\" alt=\"DOI\"></a>
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https://doi.org/10.5281/zenodo.8347772
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Keyword(s):
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\n \n \n PANGAEA\n \n \n \n FAIRsFAIR\n \n \n \n FAIR Principles\n \n \n \n Data Object Assessment\n \n \n \n Swagger\n \n \n \n FAIR\n \n \n \n Research Data\n \n \n \n FAIR data\n \n \n \n Metadata harvesting\n \n
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MIT License
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\n Version v2.2.5 \n 10.5281/zenodo.8347772\n Sep 15, 2023
\n Version v.2.0.2 \n 10.5281/zenodo.7158512\n Oct 7, 2022
\n Version v1.4.9 \n 10.5281/zenodo.6552689\n May 16, 2022
\n Version v1.4.7 \n 10.5281/zenodo.6361401\n Mar 16, 2022
\n \n Cite all versions? You can cite all versions by using the DOI 10.5281/zenodo.6361400. This DOI represents all versions, and will always resolve to the latest one. Read more.\n \n
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