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Investigating Piping Acoustic Induced Vibration Problems and Current Assessment Methods to Evaluate Fatigue Life

机译:调查管道声学诱导的振动问题和评估疲劳寿命的评估方法

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Acoustic induced vibration (AIV) of piping systems is a critical problem that Engineering, Procurement, and Construction (EPC) contractors/operators must address in order to develop a safe, robust, and fit-for-service design for developing and operating their facilities (liquefaction terminals, petrochemical facilities, power plants etc.). The motivation of this paper is to expand beyond Carucci Mueller sound power level calculations in order to understand how the pipe wall response attributes to the AIV problems. The paper delves deeper to identify resonant frequencies and corresponding modal stresses and how the two can be utilized to estimate the structural response. This paper discusses McDermott's approach for calculating modal stresses for any geometry and applying different acoustic power spectral density inputs to calculate the rms stress and the fatigue life. The impact of acoustic induced vibration is primarily dependent upon the acoustic loading, so this paper also discusses the challenges involved with accurately calculating the acoustic input loading spectrum shape for a safety relief valve, and how it could potentially impact the response/results. This step-by-step approach can facilitate a more realistic and efficient AIV analysis.
机译:管道系统的声学诱导的振动(AIV)是工程,采购和建设(EPC)承包商/运营商必须解决的关键问题,以便为开发和运营其设施开发安全,强大,适合的服务设计(液化终端,石化设施,发电厂等)。本文的动机是扩大超越Carucci Mueller声音功率水平计算,以了解管道壁响应如何属于AIV问题。本文深入识别谐振频率和相应的模态应力以及如何利用两者来估计结构响应。本文讨论了McDerMott的方法,用于计算任何几何形状的模态应力,并应用不同的声学功率谱密度输入来计算RMS应力和疲劳寿命。声学诱导的振动的影响主要取决于声加载,因此本文还讨论了对安全浮雕阀的准确计算声学输入负载谱形状的挑战,以及它可能影响响应/结果的挑战。这种逐步的方法可以促进更现实和有效的AIV分析。

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