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Dive into the research topics where Konstantin A. Korotenko is active.

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Featured researches published by Konstantin A. Korotenko.


Journal of Geophysical Research | 2007

Simulation and characterization of the Adriatic Sea mesoscale variability

Benoit Cushman-Roisin; Konstantin A. Korotenko; Camelia E. Galos; David E. Dietrich

[1] This paper presents simulations of the Adriatic Sea using the DieCAST model applied on a 1.2–min grid (about 2–km resolution). The simulations resolve the mesoscale variability because the grid size falls below the first baroclinic deformation radius (about 5–10 km) and DieCAST has very low horizontal dissipation. The model is initialized with seasonally averaged temperature and salinity data and forced with climatological winds and surface buoyancy fluxes (both heat flux and evaporation minus precipitation). River discharges are varied daily according to a perpetual year for every river, and the open-boundary conditions at Otranto Strait are obtained by nesting in two larger-scale models. The present simulations demonstrate that the DieCAST model allows mesoscale instabilities to develop at length scales of 5–20 km and over time scales of a few days. The simulated variability exhibits pronounced similarities with the actual mesoscale variability, in terms of location, nature and temporal evolution of the features. Meanders, swirls and eddies are noted along the relatively smooth Italian coast while offshore jets and filaments better describe the mesoscale activity along the more rugged coast of Croatia. In sum, DieCAST is highly suitable for the study of mesoscale variability in the Adriatic Sea. The present simulations also show that the seasonal hydrography of the Adriatic Sea is intrinsically unstable to mesoscale perturbations, and that the mesoscale variability along the Italian coast is the result of baroclinic instability of the Western Adriatic Current. It is shown how the properties of this instability are related to the local bottom topography.


Journal of Geophysical Research | 2007

Mesoscale‐resolving simulations of summer and winter bora events in the Adriatic Sea

Benoit Cushman-Roisin; Konstantin A. Korotenko


Terrestrial Atmospheric and Oceanic Sciences | 2010

High-Resolution Numerical Model for Predicting the Transport and Dispersal of Oil Spilled in the Black Sea

Konstantin A. Korotenko; Malcolm J. Bowman; David E. Dietrich


Journal of Sustainable Energy Engineering | 2013

Modeling 3-D Transport and Dispersal of Oil Plume Released During BP/Horizon Accident in the Gulf of Mexico in 2010

Konstantin A. Korotenko; Malcolm J. Bowman; David E. Dietrich; M. Hamish E. Bowman


Archive | 2014

Oil Spill Risk Management: Modeling Gulf of Mexico Circulation and Oil Dispersal

David E. Dietrich; Malcolm J. Bowman; Konstantin A. Korotenko; M. Hamish E. Bowman


Oil Spill Risk Management: Modeling Gulf of Mexico Circulation and Oil Dispersal | 2014

Gulf of Mexico Circulation

David E. Dietrich; Malcolm J. Bowman; Konstantin A. Korotenko; M. Hamish E. Bowman


Oil Spill Risk Management: Modeling Gulf of Mexico Circulation and Oil Dispersal | 2014

On the Simulation of Density Currents by z‐Level Models

David E. Dietrich; Malcolm J. Bowman; Konstantin A. Korotenko; M. Hamish E. Bowman


Archive | 2003

Mesoscale dynamics in the northern and middle Adriatic Sea

B. R. Cushman-Roisin; Konstantin A. Korotenko; David E. Dietrich


Oil Spill Risk Management: Modeling Gulf of Mexico Circulation and Oil Dispersal | 2014

DieCAST Model Origin and Development

David E. Dietrich; Malcolm J. Bowman; Konstantin A. Korotenko; M. Hamish E. Bowman


Oil Spill Risk Management: Modeling Gulf of Mexico Circulation and Oil Dispersal | 2014

Extreme Events and Oil Rig Stability

David E. Dietrich; Malcolm J. Bowman; Konstantin A. Korotenko; M. Hamish E. Bowman

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David E. Dietrich

Mississippi State University

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