Analysis of Double Seat Seal of Ultra High Pressure Flat Gate Valve

Wei Junhui, Z. Chuan, Jing Hongtao, Wang Wei, Tu Zhixiong, Shen Xiaomei, Zou Yan
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Abstract

As an important part of the Christmas tree, the sealing performance of the flat gate valve is very important, and the O-ring seal is the most commonly used seal in the flat gate valve. Therefore, the research on O-rings is particularly important. For the flat gate valve with a single gate, its structure has gradually developed from a single seat seal to a double seat seal. This article mainly analyzes the sealing principle of the double seat in the ultra-high pressure flat gate valve and the influence of the pre-tightening force of the sealing ring on the sealing effect. Using finite element analysis software, a two-dimensional axisymmetric model of the double valve seat sealing structure was established to study the non-metallic sealing performance of the valve seat. The Mises stress, the maximum contact stress of the sealing surface, and the contact area of the sealing surface of the O-ring seal under different compression ratios are analyzed. The results show that when only the sealing performance and pre-tightening force requirements are considered, an O-ring with a larger wire diameter should be selected as much as possible. When considering the service life of the O-ring seal, the compression rate of the seal ring should not exceed 20%. Therefore, the selected seal ring wire diameter is 3.75mm within the recommended seal ring compression rate range.
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超高压平板闸阀双座密封分析
作为采油树的重要组成部分,平板闸阀的密封性能非常重要,而o型圈密封是平板闸阀中最常用的一种密封。因此,对o形圈的研究显得尤为重要。对于单闸板的平板闸阀,其结构已从单座密封逐渐发展到双座密封。本文主要分析了超高压平板闸阀中双阀座的密封原理以及密封圈预紧力对密封效果的影响。利用有限元分析软件,建立了双阀座密封结构的二维轴对称模型,研究了阀座的非金属密封性能。分析了不同压缩比下o形圈密封的米塞斯应力、密封面的最大接触应力和密封面的接触面积。结果表明:当仅考虑密封性能和预紧力要求时,应尽可能选择线径较大的o型圈;在考虑o型圈密封的使用寿命时,密封圈的压缩率不应超过20%。因此,在推荐的密封环压缩率范围内,所选密封环丝径为3.75mm。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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