Three-Dimensional Cartesian Grid Method for the Simulations of Flows with Shock Waves in the Domains with Varying Boundaries

Author:

Elesin V. V.1,Sidorenko D. A.2,Utkin P. S.2ORCID

Affiliation:

1. Department of Computational Mathematics, Scientific Research Institute for System Analysis of the Russian Academy of Sciences, Nakhimovskii prospect, 36/1, Moscow 117218, Russia

2. Department of Numerical Methods and Turbulence, Institute for Computer Aided Design of the Russian Academy of Sciences, 19/18 2nd Brestskaya, Moscow 123056, Russia

Abstract

This paper is devoted to the development and quantitative evaluation of the properties of the numerical algorithm of the Cartesian grid method for three-dimensional (3D) simulation of shock-wave propagation in areas of varying shape. The detailed description of the algorithm is presented. The algorithm is relatively simple to implement and does not require solving the problem of determination of the shape of the body’s boundary intersection with regular computational cell. The accuracy of the algorithm is demonstrated by comparing the simulated and experimental data in the problems of the interaction of a shock wave (SW) with a nonmoving sphere and a moving particle.

Funder

Ministry of Science and Higher Education of the Russian Federation

Publisher

World Scientific Pub Co Pte Lt

Subject

Computational Mathematics,Computer Science (miscellaneous)

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