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An Improved Shock Factor to Evaluate the Shock Environment of Small-Sized Structures Subjected to Underwater Explosion

机译:评估水下爆炸作用下小型结构冲击环境的改进冲击因子

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Shock factor is conventionally used to assess the effect of an underwater explosion on a target. The dimensions of some structures are much smaller than the wavelength of incident wave induced by the underwater explosion. The conventional shock factor may be excessively severe for small-sized structures because it neglects the effect of scattering; so it is necessary to study the shock factor for small objects. The coupled mode method is applied to study the scattering field surrounding the cylindrical shells. A nonlinear relation differential is derived from the impact received by the cylindrical shells and the ratio between the diameters of the shells and the wavelength of the incident wave. An improved shock factor is developed based on the fitted curve, considering the scattering effect caused by the diameters of the submerged cylindrical shells. A set of numerical simulations are carried out to validate the accuracy of the proposed approach. The results show that the cylindrical shells and spherical shells under different conditions, but with the same shock factor, have almost the same shock responses.
机译:冲击系数通常用于评估水下爆炸对目标的影响。一些结构的尺寸远小于水下爆炸引起的入射波的波长。对于小型结构,传统的冲击因子可能会过于严重,因为它忽略了散射的影响。因此有必要研究小物体的冲击系数。应用耦合模式方法研究了圆柱壳周围的散射场。从圆柱壳受到的冲击以及壳的直径与入射波波长之间的比率得出非线性关系微分。考虑到由淹没的圆柱壳直径引起的散射效应,基于拟合曲线开发了一种改进的冲击因子。进行了一组数值模拟,以验证所提出方法的准确性。结果表明,圆柱壳和球形壳在不同条件下,但具有相同的冲击系数,具有几乎相同的冲击响应。

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