风与地震计算:防止过程工业灾害的高压力容器要求

A. M. Senthil Anbalazahan, M. Dev Anand, K. Janardhanan, D. Kinslin
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引用次数: 0

摘要

高柱的设计是工业设备开发人员面临的一大挑战。要遵循的各种设计步骤使其变得困难和复杂。除柱的设计外,风荷载和地震荷载的计算也是主要要求之一。本文试图研究在强风和地震条件下设计多高的柱,以及制造商在设计过程中为防止故障需要考虑的所有设计步骤。计算是根据国际规范和标准的要求生成的。采用ASME SECVIII DI、ASME SECVIII DII、ASCE-93、ASCE-88等规范。ASCE规则与ASME相结合,建立了精确的设计要求。采用许用应力来确定柱的可接受性,并对柱的支座在各种荷载作用下的可接受性进行了研究。所得结果符合国际规范和标准的要求。安全设计的建议和制造商在这种类型的设计中需要遵循的强制性步骤记录如下。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wind and seismic calculation: Requirement of tall pressure vessel for preventing process industries disasters
The design of tall column is a big challenge to equipment developers in industries. The varied kind of design steps to be followed makes it difficult and complex. Apart from the column design, the wind and seismic loading calculation is one of the major requirements. This paper is an attempt to study how tall column has to be designed for withstanding heavy wind and seismic conditions and what are all the design steps fabricator needed to be considered during their design for preventing failures. The calculation is generated with respect to the requirement of international codes and standards. The code rules like ASME SECVIII DI, ASME SECVIII DII, ASCE-93 and ASCE-88 were used. The ASCE rule is combined with ASME to set up exact design requirements. The allowed stresses are used to determine the acceptability of column and its supports under all loading are studied. The obtained results are satisfactory in line with the requirement of international codes and standards. The design recommendation for safe design and the mandatory steps needed to be followed by fabricators in this type of design are recorded below.
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