AbstractWave–current interaction over the Texas–Louisiana shelf, and its effects on the dispersal and mixing of the Mississippi–Atchafalaya river plume, have been investigated using the Coupled Ocean–Atmosphere–Wave–Sediment Transport (COAWST) Modeling System. The modeling system is driven by realistic wave and current conditions at the open boundaries and high frequency1-D wind measured from a nearby meteorological station. Skill analysis demonstrates that the model reproduces the wave and salinity fields reasonably well. Waves over the Texas–Louisiana shelf are dominated by locally forced wind seas, and generally propagate in the same direction as the winds. Investigation into the spatial differences in the effect of waves reveals two dis...
Forcing mechanisms and water column response over the West Louisiana Inner Continental Shelf (WLICS)...
The three‐dimensional structure of the offshore export of Mississippi River (MR) waters is documente...
A regional scale modeling system is being devel-oped for the Mississippi Sound and adjoining Mobile ...
AbstractWave–current interaction over the Texas–Louisiana shelf, and its effects on the dispersal an...
River plumes often develop in complex environments, where variable coastal and bottom topography, am...
The University of Southern Mississippi (USM) Ocean Modeling Group developed a high spatial resolutio...
The Mississippi Sound located on the northeastern Gulf of Mexico is greatly influenced by freshwater...
The Barataria Basin is a large estuarine system in Southeastern Louisiana, connected to the Gulf of ...
The Louisiana coast is generally characterized as a low wave-energy environment where sediment trans...
The Louisiana coast is generally characterized as a low wave-energy environment where sediment trans...
The Louisiana coast is generally characterized as a low wave-energy environment where sediment trans...
A 3-D unstructured-grid hydrodynamic model for the northern Gulf of Mexico was developed, with a hyb...
A three-dimensional wave-current model is used to investigate wave-induced circulations in a small e...
A 3-D unstructured-grid hydrodynamic model for the northern Gulf of Mexico was developed, with a hyb...
River plumes transport and mix land-based tracers into the ocean. In tidally pulsed river plumes, wi...
Forcing mechanisms and water column response over the West Louisiana Inner Continental Shelf (WLICS)...
The three‐dimensional structure of the offshore export of Mississippi River (MR) waters is documente...
A regional scale modeling system is being devel-oped for the Mississippi Sound and adjoining Mobile ...
AbstractWave–current interaction over the Texas–Louisiana shelf, and its effects on the dispersal an...
River plumes often develop in complex environments, where variable coastal and bottom topography, am...
The University of Southern Mississippi (USM) Ocean Modeling Group developed a high spatial resolutio...
The Mississippi Sound located on the northeastern Gulf of Mexico is greatly influenced by freshwater...
The Barataria Basin is a large estuarine system in Southeastern Louisiana, connected to the Gulf of ...
The Louisiana coast is generally characterized as a low wave-energy environment where sediment trans...
The Louisiana coast is generally characterized as a low wave-energy environment where sediment trans...
The Louisiana coast is generally characterized as a low wave-energy environment where sediment trans...
A 3-D unstructured-grid hydrodynamic model for the northern Gulf of Mexico was developed, with a hyb...
A three-dimensional wave-current model is used to investigate wave-induced circulations in a small e...
A 3-D unstructured-grid hydrodynamic model for the northern Gulf of Mexico was developed, with a hyb...
River plumes transport and mix land-based tracers into the ocean. In tidally pulsed river plumes, wi...
Forcing mechanisms and water column response over the West Louisiana Inner Continental Shelf (WLICS)...
The three‐dimensional structure of the offshore export of Mississippi River (MR) waters is documente...
A regional scale modeling system is being devel-oped for the Mississippi Sound and adjoining Mobile ...