Published December 6, 2024 | Version v1

Gulf of Mexico coupled hydrodynamic-biogeochemical model (1km) results for 2021

  • 1. ROR icon Louisiana State University

Description

This dataset comprises daily numerical results for 2021, generated by a coupled hydrodynamic-biogeochemical model applied to the Gulf of Mexico. The model features a horizontal resolution of 1 km and 18 vertical sigma layers. The dataset includes 2D variables at the ocean surface, such as seawater salinity, temperature, pH, aragonite saturation rate, alkalinity concentration, total inorganic carbon concentration, partial pressure of carbon dioxide, and air-sea flux of carbon dioxide.

Files

Files (36.6 GB)

Name Size
md5:a2627fedd8dc66b67ca0e3bb3cd0f7a3
737.6 MB Download
md5:5c05083ef3e71df372dc188459bb09a1
4.5 GB Download
md5:09cc3316d9e9cf520b2657038ed34a93
4.5 GB Download
md5:8b5e16d0b5cdbd14af3ad274be6aed07
4.5 GB Download
md5:eab202aae021bfe5e624059cf38e8639
4.5 GB Download
md5:15d6233ee9f869b944ec243eb9177dd9
4.5 GB Download
md5:647b8ef51eca37108a38ff7a6821aa4f
4.5 GB Download
md5:08c818eca3781ba31a3996bb25f2e3d0
4.5 GB Download
md5:2c472cc2286655497e245d7935739100
4.5 GB Download

Additional details

Funding

U.S. National Science Foundation
Larval orientation, dispersal and connectivity in a brachyuran crab under ocean acidification and elevated temperature 2049047
U.S. National Science Foundation
RAPID: Waiting to Exhale: Quantifying Tropical Storm-Induced Increased Flux of Coastal Wetland Carbon into the Atmosphere? 2054935
U.S. National Science Foundation
Collaborative: INFEWS: U.S.-China: Synergistic Effects of Petroleum Production and Ocean Environmental Changes on Oyster Health 1903340
Louisiana State University
An Exploratory Investigation into the Market Viability of Applying Numerical Models as an MRV tool for Natural-based Carbon Sequestration