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The Two-Dimensional Riemann Problem in Gas Dynamics.

The Two-Dimensional Riemann Problem in Gas Dynamics.

・ISBN 978-0-582-24408-5 hard GB£ 210.00

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お気に入り

電子版あり 大学・学術機関向け電子ブック(eBook)ISBN 978-0-203-71913-8

著者・編者Li, Jiequan / Zhang, Tong / Yang, Shuli,
シリーズMonographs and Surveys in Pure and Applied Mathematics
出版社(CRC Press, UK)
出版年月1998
ページ数310 pp.
言語ENG
ニュース番号<M25-12208 M25-6771>

解説

The Riemann problem is the most fundamental problem in the entire field of non-linear hyperbolic conservation laws. Since first posed and solved in 1860, great progress has been achieved in the one-dimensional case. However, the two-dimensional case is substantially different. Although research interest in it has lasted more than a century, it has yielded almost no analytical demonstration. It remains a great challenge for mathematicians. This volume presents work on the two-dimensional Riemann problem carried out over the last 20 years by a Chinese group. The authors explore four models: scalar conservation laws, compressible Euler equations, zero-pressure gas dynamics, and pressure-gradient equations. They use the method of generalized characteristic analysis plus numerical experiments to demonstrate the elementary field interaction patterns of shocks, rarefaction waves, and slip lines. They also discover a most interesting feature for zero-pressure gas dynamics: a new kind of elementary wave appearing in the interaction of slip lines-a weighted Dirac delta shock of the density function. The Two-Dimensional Riemann Problem in Gas Dynamics establishes the rigorous mathematical theory of delta-shocks and Mach reflection-like patterns for zero-pressure gas dynamics, clarifies the boundaries of interaction of elementary waves, demonstrates the interesting spatial interaction of slip lines, and proposes a series of open problems. With applications ranging from engineering to astrophysics, and as the first book to examine the two-dimensional Riemann problem, this volume will prove fascinating to mathematicians and hold great interest for physicists and engineers.