This was the first study to analyze phytoplankton and zooplankton community size structure during hurricane passage. A three-dimensional biophysical model was used to assess ecosystem dynamics, plankton biomass, and plankton distribution in the Gulf of Mexico during Hurricane Katrina (2005). Model simulations revealed that large phytoplankton were most responsive to hurricane-induced turbulent mixing and nutrient injection, with increases in biomass along the hurricane track. Small phytoplankton, microzooplankton, and mesozooplankton biomass primarily shifted in location and increased in spatial extent as a result of Hurricane Katrina. Hurricane passage disrupted the distribution of plankton biomass associated with mesoscale eddies. Biomass...
We introduced a sediment-induced light attenuation algorithm into a biogeochemical model of the Coup...
Ecosystem-level impacts of two hurricane seasons were compared several years after the storms in the...
With climate change, future storm frequencies and intensities and El Niño events are expected to inc...
This was the first study to analyze phytoplankton and zooplankton community size structure during hu...
Recent studies indicated sea surface temperature (SST) cooling of 6-7 degrees C and a phytoplankton ...
AbstractIncreases in hurricane strength and frequency are forecast to occur in association with glob...
The physical effects of hurricanes include deepening of the mixed layer and decreasing of the sea su...
A thesis work is presented in which a coupled model of physics and biogeochemistry, BFM17-POM1D, is ...
In this study, phytoplankton community and carbon dynamics were examined in the optically complex es...
Physical and biogeochemical changes induced by the Hurricane Fabian in the Northwest Atlantic in ear...
Sediment transport and deposition in marginal seas is jointly controlled by many factors including h...
The open ocean accounts for nearly 70% of Earth’s surface and represents the largest habitat in the ...
Hurricanes are some of the largest environmental drivers of change in coastal systems. We investigat...
Changes in species distributions and disturbances have complex impacts on ecosystem functioning. In ...
Tropical cyclones (TC) are intense, localized disturbances that can potentially cause extensive dama...
We introduced a sediment-induced light attenuation algorithm into a biogeochemical model of the Coup...
Ecosystem-level impacts of two hurricane seasons were compared several years after the storms in the...
With climate change, future storm frequencies and intensities and El Niño events are expected to inc...
This was the first study to analyze phytoplankton and zooplankton community size structure during hu...
Recent studies indicated sea surface temperature (SST) cooling of 6-7 degrees C and a phytoplankton ...
AbstractIncreases in hurricane strength and frequency are forecast to occur in association with glob...
The physical effects of hurricanes include deepening of the mixed layer and decreasing of the sea su...
A thesis work is presented in which a coupled model of physics and biogeochemistry, BFM17-POM1D, is ...
In this study, phytoplankton community and carbon dynamics were examined in the optically complex es...
Physical and biogeochemical changes induced by the Hurricane Fabian in the Northwest Atlantic in ear...
Sediment transport and deposition in marginal seas is jointly controlled by many factors including h...
The open ocean accounts for nearly 70% of Earth’s surface and represents the largest habitat in the ...
Hurricanes are some of the largest environmental drivers of change in coastal systems. We investigat...
Changes in species distributions and disturbances have complex impacts on ecosystem functioning. In ...
Tropical cyclones (TC) are intense, localized disturbances that can potentially cause extensive dama...
We introduced a sediment-induced light attenuation algorithm into a biogeochemical model of the Coup...
Ecosystem-level impacts of two hurricane seasons were compared several years after the storms in the...
With climate change, future storm frequencies and intensities and El Niño events are expected to inc...