首页> 外文会议>ASME Pressure Vessels and Piping conference >STUDY ON THE RELIEF CAPACITY AND SAFETY INTEGRITY OF MULTIPLE RELIEF VALVES OF CHARGE GAS PIPE IN ETHYLENE-CRACKING PLANT
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STUDY ON THE RELIEF CAPACITY AND SAFETY INTEGRITY OF MULTIPLE RELIEF VALVES OF CHARGE GAS PIPE IN ETHYLENE-CRACKING PLANT

机译:乙烯裂解装置充气管多重泄压阀的泄压能力和安全完整性的研究

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The shutdown of charge gas compressor in large-scale ethylene-cracking plant always involves emergency pressure relief of charge gas through multiple safety valves. The emergency relief capacity plays an important role on the safety of the overall plant. In this paper, by studying the difference between the configuration of the pressure relief system of two 1000 KTA ethylene-cracking plants (the inner diameters of the charge gas pipeline in both plants are 2m, while the number of same-sized relief valves are 28 and 19, respectively), the relief capacity of multiple relief valves is studied and compared with empirical calculation and numerical analysis. It is found that, due to the interruption of fluid flow when compressor is emergency shutdown, the upstream pressure of each relief valve increase steadily with the continuously make-up of the charge gas, but the difference between the inlet pressure of all relief valves can be neglected. With the increase of the upstream pressure, the opening of relief valves is determined mainly by the set pressure. In multiple valves pressure relief scenario, normally the downstream valves have greater relief capacity than those upstream valves if both relief valves have the same back pressure. Also, by analysis it is noted that the pressure relief capacities of multiple relief valves in both plants are sufficient. The minimum number of relief valves required for process safety is obtained. The maximum achievable Safety Integrity Level (SIL) of pressure relief system is determined by calculation of the reliability of the redundant relief valves. The analysis is used for determination of the SIL of the pressure relief system. The finding is also significant for determination of the required capacity of multiple relief valves.
机译:在大型乙烯裂解装置中,关闭充气压缩机总是需要通过多个安全阀紧急释放充气。紧急救援能力对整个工厂的安全起着重要作用。本文通过研究两个1000 KTA乙烯裂解装置的泄压系统配置之间的差异(两个装置的进料气管道的内径均为2m,而相同尺寸的泄压阀为28个)和19),研究了多个溢流阀的溢流能力,并与经验计算和数值分析进行了比较。已经发现,由于在压缩机紧急停机时流体流动中断,每个安全阀的上游压力随着充气的不断补充而稳定增加,但是所有安全阀的入口压力之间的差可以被忽略。随着上游压力的增加,安全阀的开度主要由设定压力决定。在多阀泄压情况下,如果两个泄压阀具有相同的背压,则下游阀通常比上游阀具有更大的泄压能力。而且,通过分析,注意到在两个工厂中多个安全阀的泄压能力是足够的。获得了过程安全所需的最少数量的安全阀。泄压系统可达到的最大安全完整性等级(SIL)是通过计算冗余泄压阀的可靠性来确定的。该分析用于确定泄压系统的SIL。该发现对于确定多个安全阀的所需容量也很重要。

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