FEM stress analysis and sealing performance evaluation of pipe flange connection under cyclic internal pressure and thermal changes

Yuya Omiya, T. Sawa, Y. Takagi, H. Torii
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Abstract

The effects of cyclic internal pressure and thermal changes on the sealing performance and mechanical behaviors in pipe flange connection are examined using the FEM analyses for pipe flange connections with spiral wound gasket (SWG). The contact gasket stress distributions and the axial bolt forces taking into account the cyclic internal pressure and thermal changes are demonstrated. The load (internal pressure, thermal changes) sequences are determined from the conditions for actual pipe flange connections used in petroleum and chemical plants. Furthermore, the effect of material differences between pipe flange and bolts on the contact gasket stress distribution are examined. From the FEM results, it is found that the contact gasket stress reduces to be the smallest when a plant is restarted. The reduced contact gasket stress should be taken into account in the sealing design of the connection. On the other hand, the leakage tests were carried out to verify the FEM results and the effect of number of cycles (for 21days). A fairy good agreement is seen between the estimated amount of leakage due to the contact gasket stress distributions obtained from the FEM and the measured amount of leakage. It is found that the contact gasket stress decreases when the plant is restarted and as the temperature decreases. At that time, the contact gasket stress is the smallest which may lead to a leakage accident.
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循环内压和热变化下管道法兰连接有限元应力分析及密封性能评价
通过对螺旋缠绕垫片(SWG)管道法兰连接的有限元分析,研究了循环内压和热变化对管道法兰连接密封性能和力学性能的影响。计算了考虑循环内压和热变化的接触垫片应力分布和轴向螺栓力。载荷(内部压力,热变化)顺序是根据石油和化工厂使用的实际管道法兰连接条件确定的。此外,还研究了管道法兰和螺栓材料差异对接触垫片应力分布的影响。有限元分析结果表明,当装置重新启动时,接触垫片应力减小到最小。在连接的密封设计中应考虑到接触垫片应力的减小。另一方面,进行了泄漏试验,验证了有限元计算结果和循环次数(21天)的影响。从有限元法得到的接触垫片应力分布估计的泄漏量与测量的泄漏量之间的一致性非常好。发现当装置重新启动和温度降低时,接触垫片应力减小。此时,接触垫片应力最小,可能导致泄漏事故。
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