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Long time existence of regular solutions to 3d Navier-Stokes equations coupled with the heat convection

2011/03/21 by Jolanta Socala, Socala, Jolanta, Wojciech M. Zajaczkowski +1
Mathematics · Physics and Astronomy · #35D05 #35D10 #35K05 #35K20 #35Q30 #76D03 #76D05 #Analysis of PDEs (math.AP) #FOS: Mathematics #FOS: Physical sciences #Mathematical Physics (math-ph) #math-ph #math.AP #math.MP #msc:35D05 #msc:35D10 #msc:35K05 #msc:35K20 #msc:35Q30 #msc:76D03 #msc:76D05

paper · pdf · doi:10.48550/arxiv.1103.4027

arxiv created 2011/03/21 · arxiv updated 2011/03/22

Abstract

We prove long time existence of regular solutions to the Navier-Stokes equations coupled with the heat equation. We consider the system in non-axially symmetric cylinder with the slip boundary conditions for the Navier-Stokes equations and the Neumann condition for the heat equation. The long time existence is possible because we assumed that derivatives with respect to the variable along the axis of the cylinder of the initial velocity, initial temperature and the external force in L2 norms are sufficiently small. We proved the existence of such solutions that velocity and temperature belong to Wσ2,1(Ω×(0,T)), where σ>5\over3. The existence is proved by the Leray-Schauder fixed point theorem.

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