This research uses an estuarine-watershed hydrodynamic–biogeochemical modeling system along with projected mid-21st-century changes in temperature, freshwater flow, and sea level rise to explore the impact climate change may have on future Chesapeake Bay dissolved-oxygen (DO) concentrations and the potential success of nutrient reductions in attaining mandated estuarine water quality improvements
Dataset: Alkalinity, salinity, bivalve biomass, streamflow, and submerged aquatic vegetation.Alkalin...
This data repository is a permanent archive of the results presented in the associated publication (...
Coastal environments such as the Chesapeake Bay have long been impacted by eutrophication stressors ...
The Chesapeake Bay region is projected to experience changes in temperature, sea level, and precipit...
The dataset is a permanent archive of the results presented in the associated publication (St-Lauren...
Eutrophication-induced coastal hypoxia can result in stressful habitat for marine living resources a...
Multiple climate-driven stressors, including warming and increased nutrient delivery, are exacerbati...
The dataset includes model outputs used in publication Da et al. (2018), which used the Estuarine-Ca...
Hypoxia, or the condition of low dissolved oxygen levels, is a topic of interest throughout aquatic ...
This dataset includes model outputs presented in the associated publication (Da et al. 2021, Journal...
Seasonal hypoxia is a characteristic feature of the Chesapeake Bay due to anthropogenic nutrient inp...
The Chesapeake Bay is the largest estuary in the United States, with high ecological and economic va...
© The Author(s), 2013. This article is distributed under the terms of the Creative Commons Attributi...
The effects of nutrient loading on estuaries are well-studied, given the multitude of negative water...
This data includes the model codes and input files for the paper "Large projected decline in dissolv...
Dataset: Alkalinity, salinity, bivalve biomass, streamflow, and submerged aquatic vegetation.Alkalin...
This data repository is a permanent archive of the results presented in the associated publication (...
Coastal environments such as the Chesapeake Bay have long been impacted by eutrophication stressors ...
The Chesapeake Bay region is projected to experience changes in temperature, sea level, and precipit...
The dataset is a permanent archive of the results presented in the associated publication (St-Lauren...
Eutrophication-induced coastal hypoxia can result in stressful habitat for marine living resources a...
Multiple climate-driven stressors, including warming and increased nutrient delivery, are exacerbati...
The dataset includes model outputs used in publication Da et al. (2018), which used the Estuarine-Ca...
Hypoxia, or the condition of low dissolved oxygen levels, is a topic of interest throughout aquatic ...
This dataset includes model outputs presented in the associated publication (Da et al. 2021, Journal...
Seasonal hypoxia is a characteristic feature of the Chesapeake Bay due to anthropogenic nutrient inp...
The Chesapeake Bay is the largest estuary in the United States, with high ecological and economic va...
© The Author(s), 2013. This article is distributed under the terms of the Creative Commons Attributi...
The effects of nutrient loading on estuaries are well-studied, given the multitude of negative water...
This data includes the model codes and input files for the paper "Large projected decline in dissolv...
Dataset: Alkalinity, salinity, bivalve biomass, streamflow, and submerged aquatic vegetation.Alkalin...
This data repository is a permanent archive of the results presented in the associated publication (...
Coastal environments such as the Chesapeake Bay have long been impacted by eutrophication stressors ...