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Featured researches published by Guillaume Martinat.


Physica Scripta | 2013

Surface dynamics in LES of full-depth Langmuir circulation in shallow water

Andres Tejada-Martinez; Cigdem Akan; Nityanand Sinha; Chester E. Grosch; Guillaume Martinat

Large-eddy simulations (LES) of wind-driven shallow water flows with and without full-depth Langmuir circulation (LC) are described and near-surface dynamics analyzed. LC consists of parallel counter-rotating vortices or cells that are aligned roughly in the direction of the wind and are generated by the interaction of the wind-driven shear with the Stokes drift velocity induced by surface gravity waves. Simulations do not resolve surface waves; thus the top of the domain is taken as a non-deforming, free-slip, wind shear-driven surface. In the absence of resolved surface waves, the LC-generating mechanism is parameterized via the well-known Craik?Leibovich vortex force?(Craik and Leibovich 1976 J Fluid Mech. 73 401?26) appearing in the momentum equation. LES guided by the full-depth LC field measurements of?Gargett and Wells (2007 J Fluid Mech. 576 27?61) shows that this large-scale, downwind-elongated structure changes surface log-layer dynamics in terms of mean downwind velocity and budgets of turbulent kinetic energy (TKE). For example, in terms of mean velocity, the mixing due to LC leads to a deviation from the classical surface log-law profile that is exhibited by wind-driven flow without LC. Furthermore, LC leads to a deviation from the classical balance between production and dissipation rates of TKE in the log-layer. Two key parameters controlling the extent of surface log-layer disruption caused by LC are the dominant wavelength (?) of the surface waves generating LC and the turbulent Langmuir number, Lat, which is inversely proportional to wave forcing relative to wind forcing.


Journal of Fluid Mechanics | 2012

Disruption of the bottom log layer in large-eddy simulations of full-depth Langmuir circulation

Andres Tejada-Martinez; Chester E. Grosch; Nityanand Sinha; Cigdem Akan; Guillaume Martinat


Continental Shelf Research | 2013

Scalar transport in large-eddy simulation of Langmuir turbulence in shallowwater

Cigdem Akan; Andres Tejada-Martinez; Chester E. Grosch; Guillaume Martinat


Ocean Dynamics | 2011

LES of turbulent surface shear stress and pressure-gradient-driven flow on shallow continental shelves

Guillaume Martinat; Ying Xu; Chester E. Grosch; Andres Tejada-Martinez


International Journal of Heat and Fluid Flow | 2014

Large-eddy simulation of open channel flow with surface cooling

Rachel Walker; Andres Tejada-Martinez; Guillaume Martinat; Chester E. Grosch


Bulletin of the American Physical Society | 2012

Scalar transport in large-eddy simulation of Langmuir turbulence in shallow water

Andres Tejada-Martinez; Cigdem Akan; Chester E. Grosch; Guillaume Martinat


Flow Turbulence and Combustion | 2014

Modeling of Langmuir Circulation: Triple Decomposition of the Craik–Leibovich Model

Guillaume Martinat; Chester E. Grosch; Thomas B. Gatski


Eighth International Symposium on Turbulence and Shear Flow Phenomena | 2013

LES OF LANGMUIR TURBULENCE IN STABLY STRATIFIED FLOW

Guillaume Martinat; Andres Tejada-Martinez; Chester E. Grosch


Bulletin of the American Physical Society | 2013

LES of full-depth Langmuir circulation in a crosswind tidal current

Andres Tejada-Martinez; Nityanand Sinha; Chester E. Grosch; Guillaume Martinat


Bulletin of the American Physical Society | 2013

A K-profile parameterization of Langmuir turbulence in shallow water

Nityanand Sinha; Andres Tejada-Martinez; Chester E. Grosch; Guillaume Martinat

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Cigdem Akan

University of South Florida

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Nityanand Sinha

University of South Florida

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Rachel Walker

University of South Florida

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Ying Xu

University of Kentucky

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