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A theoretical formulation for the stress analysis of multi-segmented spherical shells for high-volume liquid containment

机译:大容量液体容器多段球壳应力分析的理论公式

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摘要

A linear-elastic theoretical formulation is presented for the complete determination of the state of stress in large thin-walled liquid-filled vessels in the form of multi-segmented spherical shells. The transfer of membrane forces between adjacent shell segments is such that only vertical equilibrium of stress resultants needs to be preserved. The edge effect in the vicinity of the shell junctions is quantified on the basis of an approximate but accurate bending theory for spherical shells. The effectiveness of the developed formulation is demonstrated by consideration of a numerical example. Agreement with the results of finite-element modelling is excellent, showing that the presented theoretical formulation is a reliable, computationally efficient and accurate means of obtaining stresses in large multi-segmented spherical vessels.
机译:提出了线性弹性理论公式,以完整确定多段球形壳体形式的大型薄壁充液容器中的应力状态。膜应力在相邻壳段之间的传递使得仅需要保持应力合力的垂直平衡即可。基于近似但精确的球形壳体弯曲理论,可以量化壳体连接处附近的边缘效应。通过考虑数值实例证明了所开发配方的有效性。与有限元建模结果的一致性非常好,表明所提出的理论公式是一种可靠的,计算高效且准确的方法,可以在大型多段球形容器中获得应力。

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