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Practical application of AIV analysis methods for screening, qualification, and redesign of complex piping systems

机译:AIV分析方法在复杂管道系统的筛选,鉴定和重新设计中的实际应用

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Fatigue failures due to Acoustic Induced Vibration (AIV) can be dangerous and costly; therefore, an AIV risk assessment is a critical part of the engineering design for piping downstream of high-energy noise sources. This paper presents the application of previous work by Carucci and Mueller, F. L. Eisinger, and the Energy Institute to a complex piping system with over 50 high capacity pressure relief and control valves. In addition, this paper describes the application of a hybrid analysis approach using both the Energy Institute method and finite element analysis (FEA). The integration of FEA into the Energy Institute method was developed by SwRI and is used to evaluate the effectiveness of adding stiffening rings at high-risk welded connections, as qualified by the Energy Institute method. The analysis results show that various design changes may be effective in significantly reducing AIV risk. The strengths and weaknesses of each analysis approach are discussed, as well as practical issues that may affect the piping design modifications.
机译:由于声诱发振动(AIV)导致的疲劳失效可能是危险的,而且代价高昂;因此,AIV风险评估是高能噪声源下游管道工程设计的关键部分。本文介绍了Carucci和Mueller,F.L.Eisinger和能源研究所的先前工作在具有50多个大容量泄压和控制阀的复杂管道系统中的应用。此外,本文还介绍了使用能源研究所方法和有限元分析(FEA)的混合分析方法的应用。 SwRI开发了将FEA集成到Energy Institute方法中的方法,该方法被用来评估通过Energy Institute方法验证的高风险焊接连接处加劲环的有效性。分析结果表明,各种设计更改可能会有效降低AIV风险。讨论了每种分析方法的优缺点,以及可能影响管道设计修改的实际问题。

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