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3-D NUMERICAL SIMULATION OF UNDERWATER EXPLOSION BUBBLE 被引量:5

3-D NUMERICAL SIMULATION OF UNDERWATER EXPLOSION BUBBLE
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摘要 The problem is solved by use of the boundary integral equation method and the high order finite element discretization on the assumption that the flow of water is inviscid, incompressible and irrotational, and the bubble gas obeys the isoentropic rule. The evolution of bubble is simulated by means of mixed Euler-Lagrangian method. The comparison of the numerical results with the 'exact solution' of a spheric bub ble and experimental data shows that the mathematical model is reasonable and the 3-D numerical method has high accuracy. Important behaviour of bubble, such as immigration and jetting, and dynamic load on an ellipsoid near explosion are derived. The problem is solved by use of the boundary integral equation method and the high order finite element discretization on the assumption that the flow of water is inviscid, incompressible and irrotational, and the bubble gas obeys the isoentropic rule. The evolution of bubble is simulated by means of mixed Euler-Lagrangian method. The comparison of the numerical results with the 'exact solution' of a spheric bub ble and experimental data shows that the mathematical model is reasonable and the 3-D numerical method has high accuracy. Important behaviour of bubble, such as immigration and jetting, and dynamic load on an ellipsoid near explosion are derived.
出处 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 1996年第1期38-42,共5页 中国航空学报(英文版)
关键词 underwater explosions BUBBLES potential flow boundary integral method underwater explosions bubbles potential flow boundary integral method
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