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Shock wave diffraction by a square cavity filled with dusty gas

Authors :
Wang BY(王柏懿)
Ozer Igra
Joseph Falcovitz
Wu QS(吴清松)
Chun Wang
Source :
Shock Waves. 11:7-14
Publication Year :
2001
Publisher :
Springer Science and Business Media LLC, 2001.

Abstract

A simple two-dimensional square cavity model is used to study shock attenuating effects of dust suspension in air. The GRP scheme for compressible flows was extended to simulate the fluid dynamics of dilute dust suspensions, employing the conventional two-phase approximation. A planar shock of constant intensity propagated in pure air over Aat ground and diffracted into a square cavity filled with a dusty quiescent suspension. Shock intensities were M-s = 1.30 and M-s = 2.032, dust loading ratios were alpha = 1 and alpha = 5, and particle diameters were d = 1, 10 and 50 mum. It was found that the diffraction patterns in the cavity were decisively attenuated by the dust suspension, particularly for the higher loading ratio. The particle size has a pronounced effect on the flow and wave pattern developed inside the cavity. Wall pressure historics were recorded for each of the three cavity walls, showing a clear attenuating effect of the dust suspension.

Details

ISSN :
09381287
Volume :
11
Database :
OpenAIRE
Journal :
Shock Waves
Accession number :
edsair.doi...........06641488e450afa1acbb9c04f89ae6ed