首页> 外文会议>ASME Pressure Vessels Piping Conference >ESTIMATION OF IMPACT ENERGY FOR SEAT SEALS IN SPRING-OPERATED PRESSURE RELIEF VALVES DURING THE RESEATING PROCESS UNDER COMPRESSIBLE FLUID SERVICE CONDITIONS
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ESTIMATION OF IMPACT ENERGY FOR SEAT SEALS IN SPRING-OPERATED PRESSURE RELIEF VALVES DURING THE RESEATING PROCESS UNDER COMPRESSIBLE FLUID SERVICE CONDITIONS

机译:在可压缩流体使用条件下的静置过程中,弹簧操作的泄压阀中的密封件冲击能量的估算

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摘要

Spring operated pressure relief valves (SOPRVs) are used in many industrial fields for hazardous applications in order to protect people and environment as well as to reduce the risks of containment loss. Since SOPRVs are essential elements of safety systems, they are subject to strict functional and reliability requirements, which demand not only a proper disk lift but also give regulations concerning the maximum allowable valve tightness. However, despite the high practical importance of SOPRVs tightness through the whole life cycle, only initial tightness is considered in the literature and regulations. Therefore, in the present contribution we make an attempt to quantify the impact energy of the valve disk during the reseating of the valve, which is assumed to be the most relevant factor for repeated valve tightness. First, we present three different methods of increasing complexity for disk impact energy estimation. Subsequently, we demonstrate the application of these methods on the example of a SOPRV Type API 526 1E2 and discuss the findings. Finally, we consider a set of selected common used soft sealing materials and give implications for their usage within a range of set pressures and maximum disk lifts based on findings for the presented use case.
机译:弹簧操作的泄压阀(SOPRV)在许多工业领域中用于危险应用,以保护人员和环境,并减少密闭性损失的风险。由于SOPRV是安全系统的重要组成部分,因此它们必须满足严格的功能和可靠性要求,这不仅要求适当的阀瓣升程,而且还规定了有关最大允许阀密封性的规定。然而,尽管在整个生命周期中,SOPRV的密封性具有很高的实际重要性,但在文献和法规中仅考虑了初始密封性。因此,在本发明中,我们试图量化阀重新安装期间阀盘的冲击能量,这被认为是重复阀密封性最重要的因素。首先,我们提出了三种增加磁盘冲击能量估算复杂度的方法。随后,我们在SOPRV Type API 526 1E2的示例上演示了这些方法的应用并讨论了发现。最后,我们根据所选用例的发现,考虑一组选定的常用软密封材料,并在一定的设定压力和最大圆盘升程范围内给出其使用意义。

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  • 来源
    《ASME Pressure Vessels Piping Conference》|2019年|v003t03a030.1-v003t03a030.10|共10页
  • 会议地点 San Antonio(US)
  • 作者单位

    Workgroup on System Technologies and Engineering Design Methodology Hamburg University of Technology 21073 Hamburg Germany;

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  • 入库时间 2022-08-26 14:42:36

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