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RELIABILITY ANALYSIS OF SPRING OPERATED PRESSURE RELIEF VALVE

机译:弹簧操作减压阀可靠性分析

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Pressure relief valve (PRV) is an important automatic over-pressure protection system in the process industry. Because of the operating characteristics, the performance of PRV is supposed to be proved by the proof test. However, it's difficult to determine the proof test intervals and the availability of the PRV between two proof tests. Based on stochastic Petri nets (SPN), the reliability modeling and analysis procedure of spring operated full lift pressure relief valve which is the most widely used PRV is depicted in this paper. Firstly, the FMECA method is used to analyze the causes and effects of the typical six failure modes of the PRV, such as vibration, leakage, frequency hopping, unable to open, open before the settings and the low back seat pressure. Second, the corresponding fault tree (FT) models of the PRV are built through the multi-component failure analysis. Third, the SPN models of the PRV are established by employing the logical relations in the FT models. Based on the collected failure data of the PRVs, the steady state and transient reliability index are calculated by Monte Carlo simulation based on the SPN software SPN@. Last, the idea about PRV reliability data collection in domestic process industries is proposed. The result of the reliability analysis can provide the basis for determination the proof test intervals of the PRV, and the proposed procedure also bears significance in its application in the reliability analysis of general system in process industry.
机译:减压阀(PRV)是工艺业中的重要自动压力保护系统。由于操作特性,PRV的性能应该通过证明测试证明。然而,难以确定证明测试间隔和PRV之间的可用性在两个证据测试之间。基于随机培养网(SPN),本文描绘了弹簧操作的可靠性建模和分析过程,其是最广泛使用的PRV。首先,FMECA方法用于分析PRV,振动,频率跳频,无法打开的典型六种故障模式的原因和效果,在设置之前打开,较低的后座压力。其次,通过多分量故障分析构建PRV的相应故障树(FT)模型。第三,通过采用FT模型中的逻辑关系来建立PRV的SPN模型。基于PRV的收集的故障数据,基于SPN软件SPN @的Monte Carlo仿真计算稳态和瞬态可靠性指数。最后,提出了关于国内工艺产业中PRV可靠性数据收集的想法。可靠性分析的结果可以为确定PRV的证明测试间隔提供基础,并且该方法在其在过程行业中通用系统可靠性分析中的应用中也具有重要意义。

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