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FLUID-STRUCTURE INTERACTION MECHANISMS

机译:流体结构相互作用机制

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This paper examines fluid-structure interaction for close-in internal and external underwater explosions. The resulting flow field is impacted by the interaction between the reflected explosion shock and the explosion bubble. This shock reflects off the bubble as an expansion that reduces the pressure level between the bubble and the target, inducing cavitation and its subsequent collapse that reloads the target. Computational examples of several close-in interaction cases are presented to document the occurrence of these mechanisms. By comparing deformable and rigid body simulations, it is shown that cavitation collapse can occur solely from the shock-bubble interaction without the benefit of target deformation. Addition of a deforming target lowers flow field pressure, facilitates cavitation and cavitation collapse, as well as reducing the impulse of the initial shock loading.
机译:本文探讨了近乎内部和外部水下爆炸的流体结构相互作用。所得到的流场受到反射爆炸冲击和爆炸泡之间的相互作用的影响。这种冲击反射了气泡作为膨胀,这减少了泡沫和目标之间的压力水平,诱导空化及其随后的重新加载目标的崩溃。提出了几种接近相互作用案例的计算示例以记录这些机制的发生。通过比较可变形和刚体模拟,示出了空化塌陷可以仅来自冲击气泡相互作用而不会受到目标变形的益处。添加变形目标降低流场压力,便于空化和空化塌陷,以及降低初始冲击载荷的脉冲。

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