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Visualization of shock wave propagation due to underwater explosion

机译:由于水下爆炸引起的冲击波传播可视化

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Researchers have a great interest in determining the characteristics of shock wave propagation by an underwater explosion. But it involves complex physical processes near boundaries during the underwater explosion. The major issues are explosions, fluid interactions, fluid-structure interactions, and shock wave propagation. In general, the underwater explosion leads to shock wave propagation and it moves toward two types of boundaries. The first one is the free surface of the water, and the second is fluid-structure interaction. The underwater explosion also deals with bulk cavitation behind shock waves. This paper deals with the shock wave propagation and bulk cavitation because of the underwater explosion near the free surface. The computation and analytical results of the underwater explosion were discussed and compared. Also, polynomial and Mie-Gruneisen (shock) equation of state (EOS) of water was implemented to determine the incompressible nature of water and to get realistic results. The results of both the EOS of water were compared against each other and validated against analytical results. These results show that the equation of state of water and water-air interface has a significant influence on the characteristics of the shock wave propagation and unsteady cavitation near the free surface.
机译:研究人员非常兴趣地确定水下爆炸的冲击波传播特征。但它涉及水下爆炸期间近边界的复杂物理过程。主要问题是爆炸,流体相互作用,流体结构相互作用和冲击波传播。通常,水下爆炸导致冲击波传播,并朝向两种类型的边界移动。第一个是水的自由表面,第二是流体结构相互作用。水下爆炸还涉及冲击波背后的散空。本文涉及冲击波传播和散装空化,因为自由表面附近的水下爆炸。讨论并比较了水下爆炸的计算和分析结果。此外,实施了水的多项式和MIE-GRENEISEN(SHACK)水(EOS)的水平,以确定水的不可压缩性质,并获得现实的结果。水中eos的结果彼此进行比较,并验证了分析结果。这些结果表明,水和水 - 空中界面状态方程对自由表面附近的冲击波传播和不稳定空化的特性具有显着影响。

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