The behaviour of a gas cavity impacted by a weak or strong shock wave

Author:

Ding Zhong,Gracewski S. M.

Abstract

Two-dimensional simulations of gas cavity responses to both weak shocks (p≤ 30 MPa) and strong shocks (pranging from 500 to 2000 MPa) are performed using a finite volume method. An artificial viscosity to capture the shock and a simple, stable, and adaptive mesh generation technique have been developed for the computations. The details of the shock propagation, rarefaction, transmission and bubble wall motions are obtained from the numerical computations. A weak shock is defined in the present context as one that does not cause liquid jet formation upon impact with the bubble. For this case, a large pressure is created within the gas upon collapse due to rapid compression of the gas, ultimately causing the re-expansion of the bubble. The bubble collapse and re-expansion time predicted by this model agree well with spherically symmetric computations. When impacted by strong shock waves, the bubble will collapse and a liquid jet is formed that propagates through the bubble to the opposite bubble wall. Jet speeds as high as 2000 m s−1are predicted by this model.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference52 articles.

1. Landshoff, R. 1955 A numerical method for treating fluid flow in the presence of shocks. Tech. Rep. LA-1930.Los Alamos Scientific Lab.

2. Madar, C. L. 1965 Initiation of detonation by the interaction of shocks with density discontinuities.Phys. Fluids 8,1811–1816.

3. Bourne, N. & Field, J. 1990 Collapsing cavities in reactive and non-reactive media.In 19th International Congress on High-Speed Photography and Photonics , vol. SPIE 1358, pp.1046–1056.

4. Dear, J. P. & Field, J. E. 1988 A study of the collapse of arrays of cavities.J. Fluid Mech. 190,409–425.

5. Hirt, C. W. , Amsden, A. A. & Cook, J. L. 1974 An arbitrary Lagrangian-Eulerian computing method for all flow speeds.J. Comput. Phys. 14,227–253.

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