Some uniform estimates and blowup behavior of global strong solutions to the Stokes approximation equations for two-dimensional compressible flows |
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Authors: | Jing Li Zhouping Xin |
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Institution: | a Institute of Mathematical Sciences and Department of Mathematics, The Chinese University of Hong Kong, Shatin, N. T., Hong Kong b Institute of Applied Mathematics, AMSS, Academia Sinica, Beijing, China |
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Abstract: | This paper concerns the global existence and the large time behavior of strong and classical solutions to the two-dimensional (2D) Stokes approximation equations for the compressible flows. We consider the unique global strong solution or classical solution to the 2D Stokes approximation equations for the compressible flows together with the space-periodicity boundary condition or the no-stick boundary condition or Cauchy problem for arbitrarily large initial data. First, we prove that the density is bounded from above independent of time in all these cases. Secondly, we show that for the space-periodicity boundary condition or the no-stick boundary condition, if the initial density contains vacuum at least at one point, then the global strong (or classical) solution must blow up as time goes to infinity. |
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Keywords: | Stokes approximation equations Isentropic compressible fluids Uniform upper bound Vacuum Blowup |
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