Propagation of a cylindrical shock wave in a rotating dusty gas with heat conduction and radiation heat flux

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Abstract

A self-similar solution for the propagation of a cylindrical shock wave in a dusty gas with heat conduction and radiation heat flux, which is rotating about the axis of symmetry, is investigated. The shock is assumed to be driven out by a piston (an inner expanding surface) and the dusty gas is assumed to be a mixture of non-ideal gas and small solid particles. The density of the ambient medium is assumed to be constant. The heat conduction is expressed in terms of Fourier's law and radiation is considered to be of diffusion type for an optically thick grey gas model. The thermal conductivity K and the absorption coefficient αR are assumed to vary with temperature and density. Similarity solutions are obtained, and the effects of variation of the parameter of non-idealness of the gas in the mixture, the mass concentration of solid particles and the ratio of density of solid particles to the initial density of the gas are investigated. © 2010 The Royal Swedish Academy of Sciences.

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Vishwakarma, J. P., & Nath, G. (2010). Propagation of a cylindrical shock wave in a rotating dusty gas with heat conduction and radiation heat flux. Physica Scripta, 81(4). https://doi.org/10.1088/0031-8949/81/04/045401

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