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{{Presenters presentation
{{Presenters presentation
|CSDMS meeting abstract presentation=Turbulence, bedload, and suspended sediment transport are directly simulated by a coupled large eddy simulation of the fluid and a distinct element method for every sediment grain. This modeling system directly calculates the motion of all grains by resolved turbulence structures. The model directly calculates modification of the flow and turbulence by the grains, such as the effects of grain momentum extraction and density stratification. Simulations such as these can be used in the future to parameterize sediment transport in large-scale morphodynamic simulations.
|CSDMS meeting abstract presentation=Turbulence, bedload, and suspended sediment transport are directly simulated by a coupled large eddy simulation of the fluid and a distinct element method for every sediment grain. This modeling system directly calculates the motion of all grains by resolved turbulence structures. The model directly calculates modification of the flow and turbulence by the grains, such as the effects of grain momentum extraction and density stratification. Simulations such as these can be used in the future to parameterize sediment transport in large-scale morphodynamic simulations.
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{{Presenters additional material
{{Presenters additional material
|Working group member=Terrestrial Working Group, Hydrology Focus Research Group
|Working group member=Terrestrial Working Group, Hydrology Focus Research Group
|CSDMS meeting presentation=Mark_Schmeeckle_CSDMS_2013_annual_meeting.pdf
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Latest revision as of 22:28, 13 August 2018

CSDMS 2.0: Moving Forward


Turbulence- and Particle-Resolving Numerical Modeling of Sediment Transport.



Mark Schmeeckle

Arizona State University, United States
schmeeckle@asu.edu

Abstract
Turbulence, bedload, and suspended sediment transport are directly simulated by a coupled large eddy simulation of the fluid and a distinct element method for every sediment grain. This modeling system directly calculates the motion of all grains by resolved turbulence structures. The model directly calculates modification of the flow and turbulence by the grains, such as the effects of grain momentum extraction and density stratification. Simulations such as these can be used in the future to parameterize sediment transport in large-scale morphodynamic simulations.




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Of interest for:
  • Terrestrial Working Group
  • Hydrology Focus Research Group