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A framework to evaluate IMEX schemes for atmospheric models
by
Taylor, Mark A
, Bosler, Peter A
, Bradley, Andrew M
, Guba, Oksana
, Steyer, Andrew
in
Acoustic waves
/ Acoustics
/ Atmosphere
/ Atmospheric models
/ Frameworks
/ Gravity
/ Rossby waves
/ Runge-Kutta method
/ Sound waves
/ Spacetime
/ Stability
/ Storage
/ Variables
2020
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A framework to evaluate IMEX schemes for atmospheric models
by
Taylor, Mark A
, Bosler, Peter A
, Bradley, Andrew M
, Guba, Oksana
, Steyer, Andrew
in
Acoustic waves
/ Acoustics
/ Atmosphere
/ Atmospheric models
/ Frameworks
/ Gravity
/ Rossby waves
/ Runge-Kutta method
/ Sound waves
/ Spacetime
/ Stability
/ Storage
/ Variables
2020
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
A framework to evaluate IMEX schemes for atmospheric models
by
Taylor, Mark A
, Bosler, Peter A
, Bradley, Andrew M
, Guba, Oksana
, Steyer, Andrew
in
Acoustic waves
/ Acoustics
/ Atmosphere
/ Atmospheric models
/ Frameworks
/ Gravity
/ Rossby waves
/ Runge-Kutta method
/ Sound waves
/ Spacetime
/ Stability
/ Storage
/ Variables
2020
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A framework to evaluate IMEX schemes for atmospheric models
Journal Article
A framework to evaluate IMEX schemes for atmospheric models
2020
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Overview
We present a new evaluation framework for implicit and explicit (IMEX) Runge–Kutta time-stepping schemes. The new framework uses a linearized nonhydrostatic system of normal modes. We utilize the framework to investigate the stability of IMEX methods and their dispersion and dissipation of gravity, Rossby, and acoustic waves. We test the new framework on a variety of IMEX schemes and use it to develop and analyze a set of second-order low-storage IMEX Runge–Kutta methods with a high Courant–Friedrichs–Lewy (CFL) number. We show that the new framework is more selective than the 2-D acoustic system previously used in the literature. Schemes that are stable for the 2-D acoustic system are not stable for the system of normal modes.
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