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Nonlinear static analysis of an underwater elastic semi-toroidal shell

机译:水下弹性半环壳的非线性静力分析

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This paper addresses the nonlinear static behavior of an elastic semi-toroidal shell of circular cross section subjected to external hydrostatic loading by using membrane theory. In this study, semi-toroidal shell geometry can be computed by differential geometry. Energy functional of the semi-toroidal shell can be obtained by principle of virtual work, and written in the appropriate form. The static response of the semi-toroidal shell can be computed by nonlinear finite element method. The nonlinear numerical solutions can be obtained by the iterative method. The effects of sea water depth, cross-sectional radius to thickness, and cross-sectional to bend radii ratios on the displacement responses of the semi-toroidal shell are investigated in this paper. Interestingly, it is found that the maximum value of the displacement responses on the semi-toroidal shell under hydrostatic loading occurred to the toroid internal crest.
机译:本文利用膜理论研究了圆形截面弹性半环形壳在外部静水载荷作用下的非线性静态行为。在这项研究中,可以通过微分几何来计算半环形壳的几何形状。半环壳的能量功能可以通过虚功原理获得,并以适当的形式书写。半环壳的静态响应可以通过非线性有限元方法来计算。非线性数值解可以通过迭代法获得。本文研究了海水深度,横截面半径与厚度以及横截面与弯曲半径之比对半环形壳的位移响应的影响。有趣的是,发现在静水载荷下半环形壳上的位移响应的最大值发生在环形内部波峰上。

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