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Titlebook: Bubble Dynamics and Interface Phenomena; Proceedings of an IU J. R. Blake,J. M. Boulton-Stone,N. H. Thomas Conference proceedings 1994 Spri

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https://doi.org/10.1057/9781137482808assumed to be incompressible, inviscid and irrotational. The study reveals a wide range of responses that may be found when cavitation bubble interactions are strong, clearly indicating the significance of including the dynamics of bubble interaction in any large-scale model of two phase flow. In th
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https://doi.org/10.1057/9781137011794 this has been accomplished by placing a source of unknown strength inside the bubble. Here, a new vortex method capable of simulating problems of this nature is developed. The volume changes of the domain are handled by introducing a uniform source distribution at the surface. Examples of the appli
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https://doi.org/10.1057/9781137564771nt paper, the behavior of cavity clusters in polymer aqueous solutions subjected to an ultrasonic oscillation are studied. The validity of the model of bubble cluster dynamics in Newtonian fluids, proposed by Hansson and Mørch, is examined by observation of a cavity cluster in a polymer solution. Se
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https://doi.org/10.1057/9781137564771shock waves. For the first time, the effect of anomalous behaviour of a free surface with such an interaction was found in calculating the structure of the shock wave reflected (V Kedrinskii, S Plaksin, 1984): a characteristic time of its relaxation turned out to be much longer than the length of th
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Army Men: Military Masculinity in he already recognized two-phase continual model which takes into account deformational inertia either of medium compression or expansion due to radially attached small-scale liquid mass around the bubbles (Iordanskii, 1960; Kogarko, 1961; Wijngaarden, 1972; Nigmatulin, Shagapov, 1974; Nigmatulin, 19
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