Dataset: INSPIRE 1-D ROMS model output
Data Citation:
Yager, P., Sherrell, R. (2020) 1-D vertical mixing/biogeochemical Regional Ocean Modeling System (ROMS) output of October 2010 - March 2011 of the Amundsen Sea Polynya, modeled at twelve bloom stations. Biological and Chemical Oceanography Data Management Office (BCO-DMO). (Version 1) Version Date 2019-04-18 [if applicable, indicate subset used]. doi:10.26008/1912/bco-dmo.765252.1 [access date]
Terms of Use
This dataset is licensed under Creative Commons Attribution 4.0.
If you wish to use this dataset, it is highly recommended that you contact the original principal investigators (PI). Should the relevant PI be unavailable, please contact BCO-DMO (info@bco-dmo.org) for additional guidance. For general guidance please see the BCO-DMO Terms of Use document.
DOI:10.26008/1912/bco-dmo.765252.1
Spatial Extent: N:-72.74 E:-112 S:-73.97 W:-118.03
Temporal Extent: 2010-10-01 - 2011-03-29
Principal Investigator:
Patricia L. Yager (University of Georgia, UGA)
Co-Principal Investigator:
Robert M. Sherrell (Rutgers University)
Contact:
Hilde Oliver (University of Georgia, UGA)
BCO-DMO Data Manager:
Mathew Biddle (Woods Hole Oceanographic Institution, WHOI BCO-DMO)
Version:
1
Version Date:
2019-04-18
Restricted:
No
Validated:
Yes
Current State:
Final no updates expected
1-D vertical mixing/biogeochemical Regional Ocean Modeling System (ROMS) output of October 2010 - March 2011 of the Amundsen Sea Polynya, modeled at twelve bloom stations.
Abstract:
1-D vertical mixing/biogeochemical Regional Ocean Modeling System (ROMS) output of October 2010 - March 2011 of the Amundsen Sea Polynya, modeled at twelve bloom stations. Data are 3-hourly averages, and saved in NetCDF files. In the NetCDF files, data are distributed over a 6x6 grid with 30 depths (ranging from the surface down to 210 m, with higher resolution near the surface). ocean_avg.nc files are the standard model output, while files named ocean_avg_sensitivity_lowWW.nc are from runs using a lower winter water initial dissolved iron concentration.