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Thermoelastohydrodynamic behaviour of inclined-ellipse dimpled gas face seals 被引量:1

Thermoelastohydrodynamic behaviour of inclined-ellipse dimpled gas face seals
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摘要 The thermoelastohydrodynamic performance of an inclined-ellipse dimpled gas face seal is analyzed. The pressure distributions of the gas film and temperature fields of the seal rings and gas film are presented considering thermal and elastic distortions.Then, the influences of texturing parameters, including dimple inclination angle and dimple depth, on sealing performance are investigated under different operating parameters such as rotational speeds and seal pressures. The results show that face distortions lead to a decrease in the hydrodynamic effect at high rotational speed. The analysis shows that the opening force can decrease by more than 50% as the rotational speed increases from 0 to 35000 r min^(-1). The influence of face distortion on the seal performance, such as opening force and leakage characteristic, gradually increases with the rotational speed. The thermoelastohydrodynamic performance of an inclined-ellipse dimpled gas face seal is analyzed. The pressure distributions of the gas film and temperature fields of the seal rings and gas film are presented considering thermal and elastic distortions.Then, the influences of texturing parameters, including dimple inclination angle and dimple depth, on sealing performance are investigated under different operating parameters such as rotational speeds and seal pressures. The results show that face distortions lead to a decrease in the hydrodynamic effect at high rotational speed. The analysis shows that the opening force can decrease by more than 50% as the rotational speed increases from 0 to 35000 r min^(-1). The influence of face distortion on the seal performance, such as opening force and leakage characteristic, gradually increases with the rotational speed.
出处 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2017年第4期529-537,共9页 中国科学(技术科学英文版)
基金 supported by the National Natural Science Foundation of China(Grant No.51275473) the Zhejiang Provincial Natural Science Foundation of China(Grant No.LR14E050001)
关键词 气体端面密封 斜椭圆 弹性行为 热弹性变形 密封性能 水动力效应 高转速 thermoelastohydrodynamic effect, elastic and thermal distortions, inclined-ellipse dimple, seal performance
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