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Mathematical model and general laws of wet compression
作者姓名:王永青  刘铭  廉乐明  何健勇  严家騄
作者单位:1. Energy College,Harbin Institute of Technology,Harbin 150001,China; 2.Energy Company of Liaoning Province,Shenyang 110014,China
基金项目:SponsoredbythePostdoctoralScienceFoundationofChina(GrantNo .2 0 0 0 -0 7) .
摘    要:0 INTRODUCTIONItisknownthattheperformanceofgasturbineplantsisgreatlyrestrictedbythehighcompressionworkwhichusuallyaccountsfor 5 0 %~ 6 0 %oftheturbinework .Amethodcalledwetcompressionisproposedtoreducethecompressionworkbyinjectingalargenumberoftinywaterdrop…


Mathematical model and general laws of wet compression
WANG Yong qing ,LIU Ming ,LIAN Le ming ,HE Jian yong ,YAN Jia lu.Mathematical model and general laws of wet compression[J].Journal of Harbin Institute of Technology,2002,9(1).
Authors:WANG Yong qing  LIU Ming  LIAN Le ming  HE Jian yong  YAN Jia lu
Affiliation:1. Energy College, Harbin Institute of Technology, Harbin 150001, China
2. Energy Company of Liaoning Province, Shenyang 110014, China
Abstract:Wet compression is an effective way to enhance the performance of gas turbines and it has attracted a good deal of attention in recent years. The one sidedness and inaccuracy of previous studies,which took concentration gradient as mass transfer potential are discussed. The mass transfer process is analyzed from the viewpoint of non equilibrium thermodynamics,by taking generalized thermodynamic driving force as mass transfer potential,and the corresponding mass transfer coefficient is obtained using the heat and mass transfer equilibrium occurring between moist air and water droplets at wet bulb temperature for the sake of avoiding complex tests and providing more accurate formulas. A mathematical model of wet compression is therefore established,and the general laws of wet compression are investigated. The results show that the performance of atomizer is critical for wet compression and wet compression is more suitable for compressors with higher pressure ratio and longer compression time.
Keywords:wet compression  mathematical model  general laws  mass transfer potential
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