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伴随水力空化现象的对流换热数值研究 被引量:1

Investigation on Convective Heat Transfer With Hydrodynamic Cavitation
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摘要 以水为介质,建立了液体流动的混合物多相流模型及空化模型,运用CFD方法对水平圆管内伴随有水力空化现象的受迫对流换热过程进行了数值研究,详细分析了管道入口压力、入口温度和限流孔与管道直径比等因素对水力空化及对流换热过程的影响规律。数值模拟结果表明,空化现象出现在圆管喉部(限流孔)壁面附近区域;与相同流量下无空化时的传热相比,在发生空化现象的区域,传热壁面被蒸汽所覆盖导致传热急剧恶化,而在远离空化发生区域的下游位置,由于空化的扰流作用使得加热壁面与流体之间的传热得到明显改善。 With water as a cavitation medium,both mixture multiphase flow model and cavitation model were established,and CFD method was used to simulate the forced convection heat transfer with hydrodynamic cavitation in a horizontal circular tube.The effects of such factors as inlet pressure,initial liquid temperature and ratio of orifice to pipe diameter on cavitation and heat transfer were discussed in detail.The results show that cavitation occurs near the wall of pipe throat where heat transfer is weakened because of a lower thermal conductivity of vapor.However,heat transfer is significantly enhanced at the downstream of circular tube due to the disturbance caused by cavitation.
出处 《工程热物理学报》 EI CAS CSCD 北大核心 2012年第4期635-638,共4页 Journal of Engineering Thermophysics
基金 国家自然科学基金项目(No.51076151) 国家重点基础研究发展计划项目(No.2011CB710705)
关键词 水力空化 空化效应 对流换热 传热强化 模拟 hydrodynamic cavitation cavitation effect convective heat transfer heat transfer enhancement simulation
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参考文献11

  • 1魏群,高孟理.水力空化及其研究进展[J].湖南城市学院学报(自然科学版),2004,13(4):22-25. 被引量:17
  • 2张晓冬,李志义,武君,刘学武,刘东学,夏远景.水力空化对化学反应的强化效应[J].化工学报,2005,56(2):262-265. 被引量:47
  • 3Joshi J B,Pandit A B.Hydrolysis of Fatty Oils:Effect of Cavitation[J].Chemical Engineering Science,1993, 48(19):3440-3442
  • 4陈利军,吴纯德,张捷鑫.水力空化技术在饮用水消毒中的应用[J].水处理技术,2007,33(3):45-48. 被引量:17
  • 5沈银华,邓松圣,张攀锋.空化射流降解机理研究[J].贵州化工,2007,32(1):25-27. 被引量:6
  • 6Kelkar M A,Gogate P R,Pandit A B.Intensification of Esterification of Acids for Synthesis of Biodiesel Using Acoustic and Hydrodynamic Cavitation[J].Ultrasonics Sonochemistry,2008,15(3):188-194
  • 7Jyoti K K,Pandit A B.Hybrid Cavitation Methods for Water Disinfection:Simultaneous Use of Chemicals With Cavitation[J].Ultrasonics Sonochemistry,2003,10(45): 255-264
  • 8Gogate,P.R.Application of Cavitational Reactors for Water Disinfection:Current Status and Path Forward[J]. Environmental Management,2007,85(4):801-811
  • 9Schneider B,Kosar A,Kuo C,et al.Cavitation Enhanced Heat Transfer in Microchannels[J].Journal of Heat Transfer, 2006,128(12):1293-1301
  • 10CAI J,HUAI X L,YAN R S,et al.Numerical Simulation on Enhancement of Natural Convection Heat Transfer by Acoustic Cavitation in a Square Enclosure[J].Applied Thermal Engineering,2009,29(10):1973-1982

二级参考文献36

  • 1曹润武,彭清涛.顶空气相色谱法测定水中三氯甲烷和四氯化碳[J].中国公共卫生,2004,20(5):609-609. 被引量:8
  • 2许肖杰,林斌,陈钰清.DPD光谱分析法快速测定水中游离氯浓度[J].光谱学与光谱分析,2004,24(10):1235-1237. 被引量:5
  • 3王夙,孙三祥,高孟理,魏群,武金明.水力空化降解罗丹明B研究[J].中国给水排水,2004,20(12):46-48. 被引量:19
  • 4刘岩,蔡伟民.超声空化效应和声化学研究进展[J].大自然探索,1994,13(1):81-88. 被引量:7
  • 5[1]Parag R.Gogate.Cavitation: an auxiliary technique in wastewater treatment schemes[J].Advances in Environmental Research, 2002, (6): 335-358.
  • 6[2]Pandit A B , Kumar P S , Kumar M S.Improve reaction with hydrodynamic cavitation[J].Chemical Engineering Progress, 1999,(5): 43–50.
  • 7[3]Moholkar V S ,Kumar P S , Pandit A B.Hydrodynamic cavitation for sonochemical effects[J].Ultrasonicsonochemistry, 1999, (6): 53-65.
  • 8[4]Hammit F G.Cavitation and multiphase flow phenomena[M].New York: Mc Graw - Hill Book Co, 1980.
  • 9[5]Wang G, Inanc S , Wei S. Dynamics of attached turbulent cavitating flows[J]. Progress in Aerospace Science, 2001,37(4): 551-581.
  • 10[6]Kumar P S, Pandit A B.Modeling hydrodynamic cavitation[J].Chemical Engineering Technology ,1999 ,22(12): 1017-1027.

共引文献80

同被引文献18

  • 1胡影影.泡内气体热力学性质对空泡溃灭的影响[J].力学学报,2005,37(4):393-398. 被引量:5
  • 2黄继汤.空化与空蚀的原理及应用[M].北京:清华大学出版社,1989.
  • 3王爱玲,祝锡晶.功率超声振动加工技术[M].北京:国防工业出版社,2006..
  • 4Rayleigh L. On the Pressure Developed in a Liquid During the Collapse of a Spherical Cavity[J]. Philo- sophical Magazine. 1917,34(200) : 94-98.
  • 5Plesset M S. The Dynamics of Cavitation Bubbles [J]. Journal of Applied Mechanics. 1949, 16(3): 277-282.
  • 6Liu Bin, Cai Jun, Huai Xiulan. Heat Transfer with the Growth and Collapse of Cavitation Bubble be- tween Two Parallel Heated Walls [J].International Journal of Heat and Mass Transfer, 2014,78: 830- 838.
  • 7Yu An. Nonlinear Bubble Dynamics of Cavitation [J]. Phys. Rev. E--Statistical, Nonlinear and Soft Matter Physics,2012,85:016305.
  • 8Zhu Xijing, Guo Ce, Wang Jianqing, et al. Dy- namics Modeling of Cavitation Bubble in the Grinding Area of Power Ultrasonic Honing[J]. Advanced Materials Research, 2013,797 : 108-111.
  • 9Guo Ce, Zhu Xijing, Liu Guodong. Study on Ul- trasonic Cavitation Field of Power Ultrasonic Ho- ning [J]. Advanced Materials Research, 2013, 690/693: 3284-3288.
  • 10Zhu Xijing, Guo Ce, Wang Jianqing. The Pressure Field Radiated by Cavitation Bubble in the Grind- ing Area of Power Ultrasonic Honing[J]. Ad- vanced Materials Research, 2014,1027 : 44-47.

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