排灌机械工程学报
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Journal of Drainage and Irrigation Machinery Engin  2009, Vol. 27 Issue (6): 398-402    DOI: 10.3969/j.issn.1674—8530.2009.06.012
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Numerical analysis on flow field in mechanical seal with porous seal ring face  
Chen Huilong1,Zhai Xiao1,Zhao Binjuan1,Yang Shenghua2,Li Ya′nan3,Chen Ping1
(1.School of Energy and Power Engineering,Jiangsu University,Zhenjiang,Jiangsu  212013,China;2.Jiangsu Friendship Automobile Co.Ltd.,Zhangjiagang,Jiangsu 222000,China;3.Technical and Research Center of Fluid Machinery Engineering,Jiangsu University,Zhenjiang,Jiangsu 212013,China)
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Abstract In order to analysize the inner flow mechanism in the mechanical seal with laser-textured porous face,the single pore of sealing surface was chosen as a model and the N-S equation and k-ε equations were computed based on Computational Fluid Dynamics(CFD) method.The distributions of pressure,velocity and energy were educed when there was no differential pressure on the two sides of ring,as well as the distributions of a static and dynamic pressure when there had differential pressure on the two sides of ring.By analysis,it is found that a suitable size of micro-pore can cause hydrodynamic pressure effect produce a open force in the meantime.Influenced by the pressure difference on the two sides of micro-pore face,the dynamic pressure was changed there,producing film resistance and preventing leaking.This work can give some theoretical references for better understanding of hydrodynamic pressure effect in the mechanical seal with porous seal ring face and optimal design of micro lubricative pores.
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Articles by authors
CHEN Hui-Long
Di-Xiao
Zhao-Bin-Juan
Yang-Sheng-Hua
Li-Ya-南
Chen-Ping-
Key wordsmechanical seal   porous face   micro-pore   hydrodynamic pressure effect   numercial analysis     
Received: 2009-07-08; Published: 2009-11-30
Cite this article:   
CHEN Hui-Long, Di-Xiao, Zhao-Bin-Juan et al. Numerical analysis on flow field in mechanical seal with porous seal ring face  [J]. Journal of Drainage and Irrigation Machinery Engin, 2009, 27(6): 398-402.
 
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