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Exact Linear Hydrodynamics from the Boltzmann Equation

Exact Linear Hydrodynamics from the Boltzmann Equation
Exact Linear Hydrodynamics from the Boltzmann Equation
Exact (to all orders in Knudsen number) equations of linear hydrodynamics are derived from the Boltzmann kinetic equation with the Bhatnagar-Gross-Krook collision integral. The exact hydrodynamic equations are cast in a form which allows us to immediately prove their hyperbolicity, stability, and existence of an H theorem
214503-[4pp]
Karlin, I.V.
3f0e01a2-c4d9-4210-9ef3-47e6c426cc8a
Colangeli, M.
1748ae98-dc59-4aab-b122-eebbffccc7eb
Kroeger, M.
f972196e-7948-467c-b05e-e51f90421963
Karlin, I.V.
3f0e01a2-c4d9-4210-9ef3-47e6c426cc8a
Colangeli, M.
1748ae98-dc59-4aab-b122-eebbffccc7eb
Kroeger, M.
f972196e-7948-467c-b05e-e51f90421963

Karlin, I.V., Colangeli, M. and Kroeger, M. (2008) Exact Linear Hydrodynamics from the Boltzmann Equation. Physical Review Letters, 100 (21), 214503-[4pp]. (doi:10.1103/PhysRevLett.100.214503). (PMID:18518608)

Record type: Article

Abstract

Exact (to all orders in Knudsen number) equations of linear hydrodynamics are derived from the Boltzmann kinetic equation with the Bhatnagar-Gross-Krook collision integral. The exact hydrodynamic equations are cast in a form which allows us to immediately prove their hyperbolicity, stability, and existence of an H theorem

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Published date: May 2008

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Local EPrints ID: 186117
URI: http://eprints.soton.ac.uk/id/eprint/186117
PURE UUID: 350e1307-c1c3-4af7-834e-08efd5455339

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Date deposited: 12 May 2011 11:15
Last modified: 14 Mar 2024 03:17

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Contributors

Author: I.V. Karlin
Author: M. Colangeli
Author: M. Kroeger

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