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Practical calculations for uniform external pressure buckling in cylindrical shells with stepped walls

机译:阶梯壁圆柱壳均匀外压屈曲的实用计算

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摘要

Metal cylindrical storage structures of significant size, such as silos and vertical-axis tanks, are almost always constructed from many short cylindrical shells of different thickness as the stress resultants on the wall progressively increase towards the base. The resulting increases in thickness are always made in step changes using metal sheets of uniform thickness because of the availability of such source materials. The result is a shell with a stepped wall with multiple discrete steps in thickness. Such shells are very susceptible to buckling under external pressure when empty or partially filled, but the buckling mode may involve only part of the shell height due to the changes in shell thickness. These changes must therefore be accounted for within the design process. A new method of determining the critical buckling resistance of such shells was recently developed, and although it has been shown to be valid, the methodology for its application in practical design has not been set out or shown. This paper therefore briefly describes the new method and demonstrates the manner in which it can be used to produce rapid, safe assessments of cylindrical shells with a wide range of patterns of wall thickness changes. The results are then suitable for direct introduction into such documents as the European standard on metal shells [1] and the ECCS Recommendations [2].
机译:随着壁上所产生的应力逐渐向底部增大,诸如筒仓和垂直轴储罐之类的尺寸较大的金属圆柱形存储结构几乎总是由许多不同厚度的短圆柱壳构成。由于这样的源材料的可获得性,总是在使用均匀厚度的金属板的步骤变化中总是导致最终的厚度增加。结果是壳体的壁具有阶梯状的壁,厚度上有多个离散的阶梯。当排空或部分填充时,这样的壳体在外部压力下非常容易屈曲,但是由于壳体厚度的变化,屈曲模式可能仅涉及壳体高度的一部分。因此,必须在设计过程中考虑这些更改。最近开发了一种确定此类壳体的临界屈曲阻力的新方法,尽管已证明它是有效的,但尚未阐明或显示其在实际设计中的应用方法。因此,本文简要介绍了该新方法,并演示了可用于对壁厚变化范围广泛的圆柱壳进行快速,安全评估的方法。然后,这些结果适合直接引入诸如有关金属外壳的欧洲标准[1]和ECCS建议[2]之类的文档中。

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