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Mass-Conserving Implicit-Explicit Methods for Coupled Compressible Navier-Stokes Equations
by
Zhang, Hong
, Constantinescu, Emil M
, Jacob, Robert L
, Kang, Shinhoo
in
Atmospheric models
/ Compressibility
/ Computational fluid dynamics
/ Coupling
/ Fluid flow
/ Heat exchange
/ Heat flux
/ Interface stability
/ Mathematical models
/ Navier-Stokes equations
2021
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Mass-Conserving Implicit-Explicit Methods for Coupled Compressible Navier-Stokes Equations
by
Zhang, Hong
, Constantinescu, Emil M
, Jacob, Robert L
, Kang, Shinhoo
in
Atmospheric models
/ Compressibility
/ Computational fluid dynamics
/ Coupling
/ Fluid flow
/ Heat exchange
/ Heat flux
/ Interface stability
/ Mathematical models
/ Navier-Stokes equations
2021
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Do you wish to request the book?
Mass-Conserving Implicit-Explicit Methods for Coupled Compressible Navier-Stokes Equations
by
Zhang, Hong
, Constantinescu, Emil M
, Jacob, Robert L
, Kang, Shinhoo
in
Atmospheric models
/ Compressibility
/ Computational fluid dynamics
/ Coupling
/ Fluid flow
/ Heat exchange
/ Heat flux
/ Interface stability
/ Mathematical models
/ Navier-Stokes equations
2021
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Mass-Conserving Implicit-Explicit Methods for Coupled Compressible Navier-Stokes Equations
Paper
Mass-Conserving Implicit-Explicit Methods for Coupled Compressible Navier-Stokes Equations
2021
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Overview
Earth system models are composed of coupled components that separately model systems such as the global atmosphere, ocean, and land surface. While these components are well developed, coupling them in a single system can be a significant challenge. Computational efficiency, accuracy, and stability are principal concerns. In this study, we focus on these issues. In particular, implicit-explicit (IMEX) tight and loose coupling strategies are explored for handling different time scales. For a simplified model for the air-sea interaction problem, we consider coupled compressible Navier-Stokes equations with an interface condition. Under the rigid-lid assumption, horizontal momentum and heat flux are exchanged through the interface. Several numerical experiments are presented to demonstrate the stability of the coupling schemes. We show both numerically and theoretically that our IMEX coupling methods are mass conservative for a coupled compressible Navier-Stokes system with the rigid-lid condition.
Publisher
Cornell University Library, arXiv.org
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