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Titlebook: Shock Waves @ Marseille IV; Shock Structure and Raymond Brun,Lucien Z. Dumitrescu Conference proceedings 1995 Springer-Verlag Berlin Heide

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书目名称Shock Waves @ Marseille IV
副标题Shock Structure and
编辑Raymond Brun,Lucien Z. Dumitrescu
视频video
图书封面Titlebook: Shock Waves @ Marseille IV; Shock Structure and  Raymond Brun,Lucien Z. Dumitrescu Conference proceedings 1995 Springer-Verlag Berlin Heide
描述Recently, there have been significant advances in the fields of high-enthalpy hypersonic flows, high-temperature gas physics, and chemistry shock propagation in various media, industrial and medical applications of shock waves, and shock-tube technology. This series contains all the papers and lectures of the 19th International Symposium on Shock Waves held in Marseille in 1993. They are published in four topical volumes, each containing papers on related topics, and preceded by an overview written by a leading international expert. The volumes may be purchased independently.
出版日期Conference proceedings 1995
关键词Vibration; bifurcation; combustion; computer simulation; enthalpy; equilibrium; kinematics; kinetics; moment
版次1
doihttps://doi.org/10.1007/978-3-642-79532-9
isbn_softcover978-3-642-79534-3
isbn_ebook978-3-642-79532-9
copyrightSpringer-Verlag Berlin Heidelberg 1995
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978-3-642-79534-3Springer-Verlag Berlin Heidelberg 1995
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Quasi-Gasdynamic Equations and Computer Simulation of Rarefied Gas FlowsA QGD system of equations for describing viscous, heat-conducting gas flows, is presented. The correlation beween the QGD model and the traditional NS one is discussed. The validity of the QGD approach is examined by numerical simulation of the shock wave structure.
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The Inner Shock Structure Determined From a Modified Frame-Independent Second-Order Kinetic Theorynd-order terms, in one dimension. This Finite Difference Global Scheme (FDGS) makes use of a global Newton iterative procedure. The scheme is applied to obtain shock thicknesses in a monatomic gas up to Mach 30. Comparison with experimental data for argon gas shows good agreement, well within the da
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Experiments and Model Computation of Cylindrical Shock Waves with Time-Resolved Deformation and Fragck entering the test section was taken as the initial configuration. The computation then yields snapshots of the physical quantities of the converging wave which can be evaluated in the form of isopycnics, shock front contours, visualization of fragmentation etc., to be compared directly with the c
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