Study of shocks in a nonideal dusty gas using Maslov, Guderley, and CCW methods for shock exponents

Author:

Chauhan Swati1,Chauhan Antim1,Arora Rajan1

Affiliation:

1. Department of Applied Science and Engineering , Indian Institute of Technology , Roorkee , India

Abstract

Abstract In this work, we consider the system of partial differential equations describing one-dimensional (1D) radially symmetric (i.e., cylindrical or spherical) flow of a nonideal gas with small solid dust particles. We analyze the implosion of cylindrical and spherical symmetric strong shock waves in a mixture of a nonideal gas with small solid dust particles. An evolution equation for the strong cylindrical and spherical shock waves is derived by using the Maslov technique based on the kinematics of 1D motion. The approximate value of the similarity exponent describing the behavior of strong shocks is calculated by applying a first-order truncation approximation. The obtained approximate values of similarity exponent are compared with the values of the similarity exponent obtained from Whitham’s rule and Guderley’s method. All the above computations are performed for the different values of mass fraction of dust particles, relative specific heat, and the ratio of the density of dust particle to the density of the mixture and van der Waals excluded volume.

Publisher

Walter de Gruyter GmbH

Subject

Physical and Theoretical Chemistry,General Physics and Astronomy,Mathematical Physics

Reference30 articles.

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2. L. Landau and E. Lifshitz, Fluid Mechanics, Oxford, Pergamon Press, 1959.

3. Y. B. Zeldovich and Y. P. Raizer, Physics of Shock Waves and High-Temperature Hydrodynamic Phenomena, vol. I, New York, Academic Press, 1966.

4. Y. B. Zeldovich and Y. P. Raizer, Physics of Shock Waves and High-Temperature Hydrodynamic Phenomena, vol. II, New York, Academic Press, 1967.

5. G. B. Whitham, Linear and Nonlinear Waves, New York, John Wiley & Sons, 1974.

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