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Statistical characterisation and modelling of random geometric imperfections in cylindrical shells

机译:圆柱壳中随机几何缺陷的统计表征和建模

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摘要

Thin cylindrical shells are the most prevalent and important structural component of vessels across the process industries. Such structures are prone to accidental buckling due to inadvertently induced vacuum. Minor deviations in the nominal geometry of the shell can affect the apparent initial buckling load. One common deviation is that the radius of the vessel is not constant but rather varies randomly with location on the shell. This paper presents extensive experimental data permitting a full statistical characterisation of defects of this nature. The data was obtained from detailed measurements of 39 replicate test vessels at the laboratory scale. Both amplitude and frequency content of this type of imperfection is quantified. Furthermore a methodology whereby the variation in radius is characterised as a two dimensional random field is outlined. An algorithm to generate realisations of this field is developed and the output is shown to be consistent with the measured results.
机译:圆柱形薄壳是整个过程工业中最普遍,最重要的容器结构部件。由于无意中引起的真空,这样的结构易于发生意外屈曲。壳体标称几何形状的微小偏差会影响表观的初始屈曲载荷。一种常见的偏差是容器的半径不是恒定的,而是随壳体上的位置随机变化。本文介绍了广泛的实验数据,可以对这种性质的缺陷进行全面的统计表征。数据是从实验室规模的39个重复测试容器的详细测量获得的。这类缺陷的幅度和频率含量都可以量化。此外,概述了一种方法,其中半径变化被表征为二维随机场。开发了生成该字段实现的算法,并显示输出与测量结果一致。

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