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首页> 外文期刊>Journal of Fluids and Structures >Submerged fluid-filled cylindrical shell subjected to a shock wave: Fluid-structure interaction effects
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Submerged fluid-filled cylindrical shell subjected to a shock wave: Fluid-structure interaction effects

机译:浸没在水下的充满液体的圆柱壳受到冲击波的影响:流固耦合效应

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摘要

A submerged fluid-filled circular cylindrical shell subjected to a shock wave propagating in the external fluid is considered. The study focuses on a number of acoustic and structural effects taking place during the interaction. Specifically, the influence of the acoustic phenomena in the fluid on the stress-strain state of the shell is analysed using two different visualization techniques. The effect that the parameters of the shell have on the internal acoustic field is addressed as well, and the 'shock transparency' of various shells is discussed. Special attention is paid to the analysis of the contribution of the terms in the shell equations representing bending stiffness, and the limits of applicability of the membrane theory of thin shells are discussed in the fluid-structure interaction context. The possibility of cavitation in the internal fluid is investigated, and the effect that cavitation could have on the structural dynamics of the shell is discussed. The present paper is a follow-up of the author's earlier study of the interaction between fluid-filled cylindrical shells and external shock waves.
机译:考虑了在水下流体中传播的冲击波引起的浸没流体的圆形圆柱壳。该研究着重于相互作用过程中发生的多种声学和结构效应。具体而言,使用两种不同的可视化技术分析了流体中的声学现象对壳体应力应变状态的影响。还解决了壳体参数对内部声场的影响,并讨论了各种壳体的“冲击透明性”。特别要注意对表示弯曲刚度的壳方程中的项的贡献的分析,并且在流固耦合环境中讨论了薄壳膜理论的适用范围。研究了内部流体中空化的可能性,并讨论了空化可能对壳体的结构动力学产生的影响。本文是作者对流体填充圆柱壳与外部冲击波之间相互作用的早期研究的后续研究。

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