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LEAKAGE ANALYSIS OF GASKETED FLANGED JOINTS UNDER COMBINED INTERNAL PRESSURE AND THERMAL LOADING

机译:内部压力组合和热负荷下垫圈法兰接头泄漏分析

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Leakage in Gasketed Flanged Joints (GFJs) has always been a great problem for the process industry. The sealing performance of a GFJ depends on its installation and applied loading conditions. This paper aims to finding the leak rate through ANSI class#150 flange joints using a compressed asbestos sheet (CAS) gasket under combined structural and thermal transient loading conditions using two different leak rate models and two different bolt-up levels. The first model is a Gasket Compressive Strain model in which strains are determined using finite element analysis. The other model is based on Porous Media Theory in which gasket is considered as porous media. Leakage rates are determined using both leak rate models and are compared against appropriate tightness classes and the effectiveness of each approach is presented.
机译:垫圈的法兰关节(GFJS)泄漏一直是工艺业的一个很大的问题。 GFJ的密封性能取决于其安装和施加的装载条件。本文旨在通过使用两种不同的泄漏速率模型和两种不同的螺栓电平,在组合结构和热瞬态负载条件下使用压缩的石棉板(CAS)垫片来找到泄漏率。第一模型是垫圈压缩应变模型,其中使用有限元分析确定菌株。另一模型基于多孔介质理论,其中垫圈被认为是多孔介质。利用泄漏率模型确定泄漏速率,并与适当的紧密性等级进行比较,并提出了每种方法的有效性。

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