Simplified Formulas for External Pressure Design

W. M. Kirkland, Christopher R. Bett
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Abstract

Design of vessels for external pressure currently requires a chart-based solution or analytical approaches which are not necessarily intuitive. In this paper, we propose simple formulas for the external pressure evaluation of pipes and other cylindrical pressure vessels. We present a conceptual comparison between the elastic and elastic-plastic stability of structural columns and that of cylindrical vessels of long, intermediate, and short length. Their common features allow an accurate and straightforward approach for external pressure design. The approach is also extended to spherical caps, conical vessels, and formed heads. We compare the method presented to the current acceptance criteria from various design codes, including the ASME Boiler and Pressure Vessel Code Section VIII, Code Case 2286, and EN 13445-3, as well as codes for steel and aluminum structures. In further discussion, the simplified method is compared against the results of more than 500 experiments on the buckling of cylindrical and spherical vessels published over the past two centuries. This simple but accurate approximation is conceptually intuitive, analytically straightforward, and shows potential utility in pressure vessel design codes, as well as piping design codes such as B31 that currently reference ASME VIII for external pressure design.1
外压设计简化公式
目前,外部压力容器的设计需要基于图表的解决方案或分析方法,而这些方法不一定是直观的。在本文中,我们提出了简单的计算管道和其他圆柱形压力容器外压力的公式。我们提出了结构柱的弹性和弹塑性稳定性与长、中、短长度圆柱形容器的弹性和弹塑性稳定性的概念比较。它们的共同特点允许外部压力设计的精确和直接的方法。该方法也扩展到球形帽,锥形容器和形成的封头。我们将所提出的方法与当前各种设计规范的验收标准进行比较,包括ASME锅炉和压力容器规范第VIII节,规范案例2286和EN 13445-3,以及钢和铝结构规范。在进一步的讨论中,将简化方法与过去两个世纪发表的500多个圆柱形和球形容器屈曲实验结果进行了比较。这种简单但准确的近似在概念上直观,分析上直截了当,并且在压力容器设计规范以及管道设计规范(如B31)中显示出潜在的实用性,该规范目前参考ASME VIII进行外部压力设计
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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