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首页> 外文期刊>Journal of Sound and Vibration >Interaction of a spherical shock wave and a submerged fluid-filled circular cylindrical shell
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Interaction of a spherical shock wave and a submerged fluid-filled circular cylindrical shell

机译:球形冲击波与浸没液体的圆柱壳的相互作用

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The complete three-dimensional interaction between a spherical shock wave and a submerged fluid-filled elastic circular cylindrical shell is considered. A hybrid analytical-numerical solving procedure is established. An exact analytical solution in the form of double Fourier series with time-depending coefficients is obtained for the hydrodynamic pressure. Displacements of a shell are approached analytically to reduce the problem to a set of systems of ordinary differential equations, which are treated numerically. Detailed analysis of the interaction is performed with emphasis given to the stress-strain state. A few important features of the interaction process have been found. In particular, it has been shown that the interior fluid not only substantially affects the magnitude of displacements and stresses, but also dramatically changes the nature of the interaction. It has been found that the absolute maximum of stresses can neither be caused by a direct action of a shock wave nor by a constructive superpose of elastic waves in the shell, but by the pressure wave propagating in the interior fluid. This fact seems to be of essential importance for engineering applications, especially when safety is a primary design concern. Another important result is that the maximum stresses are attained at large times, which makes use of early time asymptotics leading to incorrect results. The proposed semi-analytical approach seems to be computationally attractive and suitable for extensive numerical simulations. (C) 2002 Elsevier Science Ltd. All rights reserved. [References: 17]
机译:考虑球形冲击波与浸没流体的弹性圆柱壳之间的完整三维相互作用。建立了混合解析-数值求解程序。对于水动力压力,获得了具有时间相关系数的双傅里叶级数形式的精确解析解。可以通过分析逼近壳体的位移来将问题简化为一组常微分方程组,并对其进行数值处理。相互作用的详细分析着重于应力-应变状态。已经发现了交互过程的一些重要特征。特别地,已经显示出内部流体不仅实质上影响位移和应力的大小,而且显着改变了相互作用的性质。已经发现,应力的绝对最大值既不是由冲击波的直接作用也不是由壳体中的弹性波的建设性叠加引起的,而是由在内部流体中传播的压力波引起的。这个事实对于工程应用似乎至关重要,特别是在安全性是主要设计问题时。另一个重要的结果是,在较大的时间获得了最大的应力,这利用了早期的渐近症状导致了错误的结果。所提出的半分析方法在计算上似乎很有吸引力,并且适合于广泛的数值模拟。 (C)2002 Elsevier ScienceLtd。保留所有权利。 [参考:17]

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