刚度
沟槽(工程)
泄漏(经济)
材料科学
印章(徽章)
结构工程
对数
稳态(化学)
机械
复合材料
工程类
数学
物理
化学
经济
视觉艺术
数学分析
艺术
宏观经济学
冶金
物理化学
作者
Guiyue Kou,Xinghu Li,Yan Wang,Mouyou Lin,Chunsen Tan,Mingfei Mou
标识
DOI:10.1108/ilt-05-2019-0171
摘要
Purpose The purpose of this paper is to enhance film stiffness and control seal leakage of conventional spiral groove dry gas seal (S-DGS) at a high-speed condition by introducing a new type superellipse surface groove. Design/methodology/approach The steady-state performance and dynamic characteristics of superellipse groove dry gas seal and S-DGS are compared numerically at a high-speed condition. The optimized superellipse grooves for maximum steady-state film stiffness and dynamic stiffness coefficient are obtained. Findings Properly designed superellipse groove dry gas seal provides remarkable larger steady-state film stiffness, dynamic stiffness coefficient and lower leakage rate at a high-speed condition compared to a typical S-DGS. The optimal values of first superellipse coefficient for maximum steady and dynamic stiffness are 1.3 and 1.4, whereas the optimal values of second superellipse coefficient for which are 1.4 and 2.0, respectively. Originality/value A new type of molded line, namely, superellipse curve, is proposed to act as the boundary lines of surface groove of dry gas seal, as an alternative of typical logarithm helix. The conclusions provide references for surface groove design with larger stiffness and lower leakage rate at a high-speed condition.
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