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3-D axisymmetric subsonic flows with nonzero swirl for the compressible Euler–Poisson system SCIE SCOPUS

Title
3-D axisymmetric subsonic flows with nonzero swirl for the compressible Euler–Poisson system
Authors
BAE, MYOUNGJEANWeng, Shangkun
Date Issued
2018-01
Publisher
GAUTHIER-VILLARS/EDITIONS ELSEVIER
Abstract
We address the structural stability of 3-D axisymmetric subsonic flows with nonzero swirl for the steady compressible Euler–Poisson system in a cylinder supplemented with non-small boundary data. A special Helmholtz decomposition of the velocity field is introduced for 3-D axisymmetric flow with a nonzero swirl (=angular momentum density) component. With the newly introduced decomposition, a quasilinear elliptic system of second order is derived from the elliptic modes in Euler–Poisson system for subsonic flows. Due to the nonzero swirl, the main difficulties lie in the solvability of a singular elliptic equation which concerns the angular component of the vorticity in its cylindrical representation, and in analysis of streamlines near the axis r=0.
URI
https://oasis.postech.ac.kr/handle/2014.oak/41032
DOI
10.1016/j.anihpc.2017.03.004
ISSN
0294-1449
Article Type
Article
Citation
ANNALES DE L INSTITUT HENRI POINCARE-ANALYSE NON LINEAIRE, vol. 35, no. 35, page. 161 - 186, 2018-01
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배명진BAE, MYOUNGJEAN
Dept of Mathematics
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