Parametric Study on the Vibration of Small-Bore Piping Branch Connections

G. van Zyl, R. Brodzinsky
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Abstract

In vibration service, small-bore piping connections, especially unsupported cantilever configurations, are associated with a high level of concern as potential fatigue crack initiation locations. Various international guidelines and procedures address the assessment of piping vibration in general and of small-bore connections in particular. In this work, a review of these guidelines as applied to a specific class of small-bore connection was performed by means of a finite element parametric study on a large number of branch connections. The small-bore configuration evaluated in this work is an unsupported cantilever connection made using an integrally reinforced forged branch fitting with butt-welded joints. At the end of the branch is a flanged connection with either a blind flange only, or a single or double valve with a blind flange. For the parametric study a random distribution of run pipe diameter and thickness and branch pipe diameter, thickness, and length was used to evaluate a few thousand different small-bore configurations. Modal analysis was used to determine the relationship between stress and velocity at two critical locations: the weld between the branch fitting and header and the weld between the branch pipe and branch fitting. Results of the parametric study were processed and compared to the evaluation criteria of a number of established and upcoming guidelines and standards.
小口径管道分支连接振动的参数化研究
在振动应用中,小口径管道连接,特别是无支撑的悬臂结构,作为潜在的疲劳裂纹起裂位置而受到高度关注。各种国际准则和程序涉及管道振动的一般评估,特别是小口径连接。在这项工作中,通过对大量分支连接的有限元参数研究,对这些准则应用于特定类别的小口径连接进行了审查。在这项工作中评估的小口径配置是一个无支撑的悬臂连接,使用整体增强锻造分支接头与对接焊接接头。在分支的末端是一个法兰连接,可以只带盲法兰,也可以带盲法兰的单阀门或双阀门。在参数化研究中,采用随机分布的下入管管径、管厚和支管管径、管厚和管长来评估几千种不同的小口径配置。采用模态分析方法确定了分支管件与集箱焊缝和分支管与分支管件焊缝两个关键位置的应力与速度关系。对参数化研究的结果进行了处理,并与一些已建立的和即将出台的指南和标准的评价标准进行了比较。
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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