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电荷作用对均质-非均质凝结流动的影响

崔可 刘华坪 宋彦萍 陈焕龙 陈浮

崔可, 刘华坪, 宋彦萍, 陈焕龙, 陈浮. 电荷作用对均质-非均质凝结流动的影响[J]. 航空动力学报, 2016, 31(4): 788-799. doi: 10.13224/j.cnki.jasp.2016.04.004
引用本文: 崔可, 刘华坪, 宋彦萍, 陈焕龙, 陈浮. 电荷作用对均质-非均质凝结流动的影响[J]. 航空动力学报, 2016, 31(4): 788-799. doi: 10.13224/j.cnki.jasp.2016.04.004
CUI Ke, LIU Hua-ping, SONG Yan-ping, CHEN Huan-long, CHEN Fu. Charge-effect on the homo-heterogeneous condensing flow[J]. Journal of Aerospace Power, 2016, 31(4): 788-799. doi: 10.13224/j.cnki.jasp.2016.04.004
Citation: CUI Ke, LIU Hua-ping, SONG Yan-ping, CHEN Huan-long, CHEN Fu. Charge-effect on the homo-heterogeneous condensing flow[J]. Journal of Aerospace Power, 2016, 31(4): 788-799. doi: 10.13224/j.cnki.jasp.2016.04.004

电荷作用对均质-非均质凝结流动的影响

doi: 10.13224/j.cnki.jasp.2016.04.004
基金项目: 

国家自然科学基金(51306042,51121004)

详细信息
    作者简介:

    崔可(1987-),男,湖南湘潭人,博士生,主要从事叶轮机械内湿蒸气两相流动方面的研究.

  • 中图分类号: V231.1

Charge-effect on the homo-heterogeneous condensing flow

  • 摘要: 基于Fletcher成核理论及均质-非均质凝结双流体模型,讨论了电荷作用对凝结流动的影响,结果表明:有无电荷影响时,成核率计算公式精度均较高,流场参数的计算结果与实验结果吻合良好,相对误差不超过5%,表明所建的均质-非均质凝结双流体模型具有较高精度.不带电时,加入颗粒半径为5nm颗粒前后流场过冷度差别较小,加入颗粒半径分别为8nm和10nm颗粒后过冷度峰值虽分别降低2K和7K,但均导致自发凝结向下游迁移.当颗粒带电荷量为Q=1e,加入颗粒半径为5nm颗粒情况下对减小成核自由能障、增加非均质成核率的作用最为明显,这一作用在颗粒半径为8nm时较弱,颗粒半径为10nm情况下最弱.当带电量增加至Q=3e时,加入颗粒半径分别为5nm和8nm颗粒情况下峰值过冷度与均质凝结相比分别下降10K和6K,且较明显地抑制了自发凝结发生.

     

  • [1] 陈红梅,李亮,丰镇平,等.透平级中自发凝结及叶栅中非均质凝结流动的初步研究[J].工程热物理学报,2005,26(增刊1):65-68. CHEN Hongmei,LI Liang,FENG Zhenping,et al.Preliminary studies on wei steam flow with homogenous condensation in a turbine stage and heterogeneous in cascade[J].Journal of Engineering Thermophysics,2005,26(suppl.1):65-68.(in Chinese)
    [2] 李亮,丰镇平,李国君.平面叶栅中湿蒸汽两相凝结流动数值模拟[J].工程热物理学报,2002,23(3):309-311. LI Liang,FENG Zhenping,LI Guojun.Numerical simulation of wet steam flow with spontaneous condensation in turbine cascade[J].Journal of Engineering Thermophysics,2002,23(3):309-311.(in Chinese)
    [3] 牛凤仙,蔡小舒,宋廷勇,等.300 MW汽轮机内异质均质凝结的实验研究[J].中国电机工程学报,2009,29(29):1-6. NIU Fengxian,CAI Xiaoshu,SONG Tingyong,et al.Experimental study of heterogeneous and homogeneous condensation in a 300MW turbine[J].Proceedings of the CSEE,2009,29(29):1-6.(in Chinese)
    [4] Moore M J,Sieverding C H.Two-phase steam flow in turbines and separator[M].New York:Hemisphere Publishing Corporation,1972:174-202.
    [5] Hanzal V.Experimental determination of size and number of herterogeneous condensation nuclei in steam[D].Prague,Czech Republic:Czech Technical University,2005.
    [6] 李亮,丰镇平,陈红梅,等.凝结理论在汽轮机设计中应用的探讨[J].热力透平,2005,34(1):36-40. LI Liang,FENG Zhenping,CHEN Hongmei,et al.Study on application of condensation theory to design of steam turbine[J].Thermal Turbine,2005,34(1):36-40.(in Chinese)
    [7] 郭平生,刘海力.电离子作为凝结核时电量对液滴生长的影响[J].科学通报,2010,55(34):3340-3345. GUO Pingsheng,LIU Haili.Effect of charge on growth of droplets with ionic condensation nuclei[J].Chinese Science Bulletin,2010,55(34):3340-3345.(in Chinese)
    [8] 任宇航,许祝安.水表面张力的磁化效应[J].浙江大学学报:自然科学版,1997,31(2):142-146. REN Yuhang,XU Zhu'an.The magnetic effect on the surface tension of water[J].Journal of Zhejiang University:Natural Science,1997,31(2):142-146.(in Chinese)
    [9] Hesler S,Maurer R.Electrostatic charge measurement on the turbine-condenser connection of salf river project's Navajo generating station unit 3[R].Electric Power Research Institute Project Report RP-3849-01,1998.
    [10] Rieger N F,Dooley R B.Electrostatic charge and its influence on the condensation of steam in a turbine[R].Palo,US:Electric Power Research Institute Report 1001332,2001.
    [11] Tarelin A O,Skliarov V P.Investigation of electrophysical effects in the turbine exhaust upon flow and power output[R].Palo,US:Electric Power Research Institute Report TR113091,1999.
    [12] Hesler S,Herzog J.Preliminary results for charge test in turbine exhaust conesville unit[R].Palo,US:Electric Power Research Institute Report WO8309-06,2000.
    [13] Buckley J R.A study of heterogeneous nucleation and electrostatic charge in steam flows[D].Birmingham,UK:The University of Birmingham,2003.
    [14] Guha A,Young J B.Time-marching prediction of unsteady condensation phenomena due to supercritical heat addition[R].London:Proceeding of Turbomachinery:Latest Development in a Changing Scene,1991.
    [15] Gerber A G,Mousave A.Representing poly-dispersed droplet behavior in nucleating steam flow[J].Journal of Fluids Engineering,2007,129(11):1404-1414.
    [16] Starzmann J,Schatz M,Casey M V,et al.Modelling and validation of wet steam flow in a low pressure steam turbine[R].ASME Paper GT2011-45672,2011.
    [17] Flectcher N H.The physics of rain cloud[M].Cambridge,UK:Cambridge University Press,1969.
    [18] 周明翰.水蒸气在带高电量SiO2纳米微粒上之非均匀核凝现象[D].台南:国立成功大学,2009. CHOU Minghan.Heterogeneous nucleation of water vapor on highly charged nanoparticles of SiO2[D].Tainan:National Cheng Kung University,2009.(in Chinese)
    [19] 凡凤仙,杨林军,袁竹林,等.水汽在燃煤PM2.5表面异质核化特性数值预测[J].化工学报,2007,58(10):2561-2566. FAN Fengxian,YANG Linjun,YUAN Zhulin,et al.Numerical prediction of water vapor nucleation behavior on PM2.5 from coal combustion[J].Journal of Chemical Industry and Engineering,2007,58(10):2561-2566.(in Chinese)
    [20] Chen C C,Chen H C.Effects of charge and size on condensation of supersaturated water vapor on nanoparticles of SiO2[J].Journal of Chemical Physics,2007,126(3):526-540.
    [21] Hill P G.Condensation of water vapor during supersonic expansion in nozzles[J].Journal of Fluid Mechanics,1966,25(3):593-620.
    [22] 崔可,付云峰,陈焕龙,等.考虑相间滑移影响的湿蒸汽自发凝结流动数值研究[J].中国科学:技术科学,2014,44(4):417-424. CUI Ke,FU Yunfeng,CHEN Huanlong,et al.Numerical investigation of wet steam spontaneous condensing flow with considering the velocity slip[J].Scientia Sinica Techologica,2014,44(4):417-424.(in Chinese)
    [23] CUI Ke,CHEN Huanlong,SONG Yanping,et al.Research on wet steam spontaneous condensing flows considering phase transition and slip[J].Journal of Thermal Science,2013,22(4):320-326.
    [24] Moses C A,Stein G D.On the growth of steam droplets formed in a Laval nozzle using both static pressure and light scattering measurements[J].Journal of Fluids Engineering,1977,77(3):311-322.
    [25] Nasibulin A G,de la Mora J F,Kauppinen E I.Ion-induced nucleation of dibutyl phthalate vapors on spherical and non-spherical singly and multiply charged polyethylene glycol ions[J].Journal of Physical Chemistry A,2008,112(6):1133-1138.
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出版历程
  • 收稿日期:  2015-07-06
  • 刊出日期:  2016-04-28

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