The 3D compressible Euler equations with damping in a bounded domain |
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Authors: | Ronghua Pan Kun Zhao |
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Affiliation: | School of Mathematics, Georgia Institute of Technology, Atlanta, GA 30332, USA |
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Abstract: | We proved global existence and uniqueness of classical solutions to the initial boundary value problem for the 3D damped compressible Euler equations on bounded domain with slip boundary condition when the initial data is near its equilibrium. Time asymptotically, the density is conjectured to satisfy the porous medium equation and the momentum obeys to the classical Darcy's law. Based on energy estimate, we showed that the classical solution converges to steady state exponentially fast in time. We also proved that the same is true for the related initial boundary value problem of porous medium equation and thus justified the validity of Darcy's law in large time. |
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Keywords: | 3D compressible Euler equations Damping Darcy's law Porous medium flow |
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