Planar blast/vortex interaction and sound generation

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[1] Chen, H.
[2] Liang, S.M.
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Chen, H. | 1600年 / American Inst. Aeronautics and Astronautics Inc.卷 / 40期
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Approximation theory - Automobile engines - Gas pipelines - Laser beam effects - Numerical methods - Oscillations - Pressure effects - Vortex flow;
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摘要
By the use of a fifth-order weighted essentially nonoscillatory scheme to solve the two-dimensional, unsteady compressible Euler equations, a planar blast/vortex interaction is investigated in detail. The effects of the initial blast Mach number Ms and vortex Mach number Mv are discussed and compared with the corresponding cases of shock/vortex interaction. The sound generated by the planar blast/vortex interaction is also studied. It is found that the radial pressure peaks of the first sound for the cases of shock/vortex interaction are larger than those for the cases of blast/vortex interaction. However, the radial pressure peaks of the second sound in the blast/vortex interaction can be larger than those in the corresponding case of shock/vortex interaction. This is due to the effect of the secondary shock interacting with the vortex, enhanced by the expansion waves following the blast-wave front. In addition, an interesting phenomenon of the fourth sound, which is an exception from the first three sounds generated by the blast/vortex interaction, is found that does not occur in the case of a shock/vortex interaction.
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