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Solution of Riemann problem for dusty gas flow
Affiliation:1. Institute for Problems in Mechanics, Russian Academy of Sciences, 101 Vernadsky Avenue, bldg 1, 119526 Moscow, Russia;2. Bauman Moscow State Technical University, 5 Second Baumanskaya Street, 105005 Moscow, Russia;3. National Research Nuclear University MEPhI, 31 Kashirskoe Shosse, 115409 Moscow, Russia;4. Cardiff University, Heath Park, Cardiff CF14 4XY, UK;1. Department of Mathematics, University of Delhi, Delhi 110007, India;2. Department of Mathematics, Netaji Subhas Institute of Technology, Sector-3, Dwarka, New Delhi 110078, India;1. Department of Mathematics and Statistics, University of Hyderabad, Hyderabad-500046, India;2. Department of Mathematics, IIT Bombay, Powai, Mumbai-400076, India;1. Department of Mathematics, Yunnan Normal University, Kunming 650500, PR China;2. College of Mathematics and Statistics, Xinyang Normal University, Xinyang 464000, PR China
Abstract:A direct approach is used to solve the Riemann problem for a quasilinear hyperbolic system of equations governing the one dimensional unsteady planar flow of an isentropic, inviscid compressible fluid in the presence of dust particles. The elementary wave solutions of the Riemann problem, that is, shock waves, rarefaction waves and contact discontinuities are derived and their properties are discussed for a dusty gas. The generalised Riemann invariants are used to find the solution between rarefaction wave and the contact discontinuity and also inside rarefaction fan. Unlike the ordinary gasdynamic case, the solution inside the rarefaction waves in dusty gas cannot be obtained directly and explicitly; indeed, it requires an extra iteration procedure. Although the case of dusty gas is more complex than the ordinary gas dynamics case, all the parallel results for compressive waves remain identical. We also compare/contrast the nature of the solution in an ordinary gasdynamics and the dusty gas flow case.
Keywords:Riemann problem  Dusty gas  Shock wave  Rarefaction wave
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