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Article type: Research Article
Authors: Jiang, Ning; | Levermore, C. David;
Affiliations: Courant Institute of Mathematical Sciences, 251 Mercer Street, New York, NY 10012, USA. E-mail: [email protected] | Department of Mathematics and Institute for Physical Science and Technology, University of Maryland, College Park, MD 20742, USA. E-mail: [email protected]
Note: [] Current address: Mathematical Sciences Center, Tsinghua University, Hai Dian District, Beijing 100084, China.
Note: [] Corresponding author.
Abstract: We construct the weakly nonlinear-dissipative approximate system for the general compressible Navier–Stokes system in a periodic domain. It was shown in Arch. Rational Mech. Anal. 201 (2011), 377–412, that because the Navier–Stokes system has an entropy structure, its approximate system will have Leray-like global weak solutions. These solutions decompose into an incompressible part governed by an incompressible Navier–Stokes system, and an acoustic part governed by a nonlocal quadratic equation which couples it to the incompressible part. We obtain regularity results for the acoustic part of the solution via a Littlewood–Paley decomposition that extend to this general setting results found by Masmoudi [Ann. Inst. H. Poincaré 18 (2001), 199–224] and Danchin [Amer. J. Math. 124 (2002), 1153–1219] in the γ-law barotropic setting.
Keywords: weakly compressible, Navier–Stokes, averaging, regularity
DOI: 10.3233/ASY-2011-1066
Journal: Asymptotic Analysis, vol. 76, no. 2, pp. 61-86, 2012
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