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Adaptive Time-Stepping for Incompressible Flow Part II: Navier–Stokes Equations
by
Gresho, Philip M.
, Griffiths, David F.
, Silvester, David J.
, Kay, David A.
in
Computational fluid dynamics
/ Fluid flow
/ Incompressible flow
/ Linear programming
/ Mathematical analysis
/ Mathematical models
/ Navier-Stokes equations
/ Simulation
/ Solvers
/ Strategy
/ Studies
2010
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Adaptive Time-Stepping for Incompressible Flow Part II: Navier–Stokes Equations
by
Gresho, Philip M.
, Griffiths, David F.
, Silvester, David J.
, Kay, David A.
in
Computational fluid dynamics
/ Fluid flow
/ Incompressible flow
/ Linear programming
/ Mathematical analysis
/ Mathematical models
/ Navier-Stokes equations
/ Simulation
/ Solvers
/ Strategy
/ Studies
2010
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Do you wish to request the book?
Adaptive Time-Stepping for Incompressible Flow Part II: Navier–Stokes Equations
by
Gresho, Philip M.
, Griffiths, David F.
, Silvester, David J.
, Kay, David A.
in
Computational fluid dynamics
/ Fluid flow
/ Incompressible flow
/ Linear programming
/ Mathematical analysis
/ Mathematical models
/ Navier-Stokes equations
/ Simulation
/ Solvers
/ Strategy
/ Studies
2010
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Adaptive Time-Stepping for Incompressible Flow Part II: Navier–Stokes Equations
Journal Article
Adaptive Time-Stepping for Incompressible Flow Part II: Navier–Stokes Equations
2010
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Overview
We outline a new class of robust and efficient methods for solving the Navier -- Stokes equations. We describe a general solution strategy that has two basic building blocks: an implicit time integrator using a stabilized trapezoid rule with an explicit Adam -- Bashforth method for error control, and a robust Krylov subspace solver for the spatially discretized system. We present numerical experiments illustrating the potential of our approach.
Publisher
Society for Industrial and Applied Mathematics
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