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Configuration Design Of A Lightweight Torpedo Subjected To An Underwater Explosion

机译:水下爆炸轻型鱼雷的结构设计

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The response of a lightweight torpedo when subjected to an underwater explosion (UNDEX) is an important criterion for multidisciplinary design. This paper investigates the effect of structural stiffeners on the performance of a lightweight torpedo. The finite element package ABAQUS was used to model the UNDEX and the fluid-structure interaction (FS1) phenomena, which are critical for accurate evaluation of torpedo stress levels. The pressure wave resulting from an underwater explosion was modeled using similitude relations and it was assumed to be a spherical wave. Various explosive weights and explosion distances were explored to determine the critical distance both for an un-stiffened and a stiffened torpedo. Once it was established that the stiffened torpedo performed better under explosive pressure loads, various configurations were studied to determine the optimal number of ring and longitudinal stiffeners. A final configuration was obtained for the torpedo that had minimum weight and was least sensitive to small manufacturing variations in the dimensions of the stiffeners. This paper presents details of the torpedo and fluid models and the finite element analysis method for FSI.
机译:轻型鱼雷在水下爆炸(UNDEX)下的响应是多学科设计的重要标准。本文研究了结构加强件对轻型鱼雷性能的影响。有限元程序包ABAQUS用于对UNDEX和流固耦合(FS1)现象进行建模,这对于精确评估鱼雷应力水平至关重要。使用相似关系对水下爆炸产生的压力波进行建模,并将其假定为球面波。探索了各种炸药重量和爆炸距离,以确定未加硬鱼雷和加硬鱼雷的临界距离。一旦确定了加劲的鱼雷在爆炸压力下的性能更好,便研究了各种配置来确定环形和纵向加劲肋的最佳数量。鱼雷的最终构型具有最小的重量,并且对加劲肋尺寸的微小制造变化不敏感。本文详细介绍了鱼雷和流体模型以及FSI的有限元分析方法。

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