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Titlebook: Shock Waves; Proceedings of the 1 Kazuyoshi Takayama Conference proceedings 1992 Springer-Verlag Berlin Heidelberg 1992 Oscillation.Profil.

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Vorticity in shock-accelerated density-stratified interfaces: Deposition and “intermediate” time evod quantify . evolution of coherent vortex structures. Our numerical experiments model laboratory shock tube experiments in which a planar shock (M = 4.0) interacts with an inclined interface separating fluids of different density or acoustic impedance. Two generic interfacial classes are considered,
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Modern shock-capturing schemes cases, the cost of achieving given resolution can be reduced by an order of magnitude or more by employing a grid that adapts dynamically to the evolving solution. Such a grid implies a need for data structures that are not of the simple matrix type. Advantages and disadvantages of unstructured and
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Effects of focused shock waves on biological tissues: Cavitation in the prefocal region and the flui the focal zone were studied. The shock waves were produced by a specially designed piezo-ceramic (overhead and water-bag type) generator. For focus localization an ultrasonic sector probe was used. On aluminum foils numerous pits were observed circumferentially around the central major deformity. T
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Studies in shock waves, liquid impact, jets and cavitationroblems that relate to all these areas occur in the liquid impact situation. Thus the article concentrates on shock development and detachment conditions arising in liquid impact. High speed photographic evidence is presented and a gel simulation technique is used to form shapes such as wedges, disk
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