期刊文献+

加热功率对三角形微肋阵内流动与对流换热特性的影响 被引量:2

Effect of different heating power on flow and convective heat transfer characteristics of triangle micro pin fins
下载PDF
导出
摘要 建立了三角形微肋阵对流换热性能测试系统,以去离子水为工质对三角形微肋阵(d=247μm,H=500μm)的流动及对流换热特性进行了实验研究,测试并得到了去离子水流经三角形微肋阵时压力降、阻力系数f及Nusselt数(Nu)等参数在不同Reynolds数(Re)及加热功率P下的变化规律,分析了加热功率对于三角形微肋阵流动阻力及对流换热特性的影响机理。实验结果表明,Re为0~250范围内,随加热功率增加三角形微肋阵阻力系数明显增大,增加幅度最高可达200%以上;当Re〉250时,不同加热功率对阻力系数的影响显著减弱;而当Re〉600时,阻力系数几乎不再随加热功率增加而发生变化。当Re〈250时,随加热功率增加三角形微肋阵Nu逐渐增大,Nu增加幅度最高可达75%以上,即加热功率增加可以强化对流换热;然而当Re〉250时,受三角形背风区旋涡演变的影响,Nu随加热功率增加而逐渐减小。 Flow and convective heat transfer characteristics of the triangle micro pin fins(d = 247 μm, H = 500 μm) using de-ionized water as working fluid were experimentally investigated. The change rules of pressure drops, friction factors and Nusselt numbers etc. in triangular micro pin fins were measured when Reynolds number changed from 0—1000 with different heating power of 50, 100 and 150 W, respectively. In addition, the influence of heating power on flow resistance and convective heat transfer of triangular micro pin fins was analyzed. The experimental results illustrated that the friction factors of the triangle micro pin fins increase markedly with the increase of heating power at Re〈250 and the increment of friction factors reached more than 200%, while the effect of heating power was significantly reduced at Re〉250 and the value of f almost no longer changed with increasing heating power after Re〉600. The convective heat transfer in triangular micro pin fins was enhanced by increasing heating power at Re〈250 and the increment of Nusselt number at the same Re could reach more than 75%. However, this enhancement was weakened by the vertex evolution in wake zones of triangular micro pin fins and the Nu became smaller with the increase of heating power when Re〉250.
出处 《化工学报》 EI CAS CSCD 北大核心 2015年第6期2062-2069,共8页 CIESC Journal
基金 国家自然科学基金项目(51306107) 山东省自然科学基金项目(ZR2012EEQ015) 山东省科技发展计划项目(2014GGX104008) 江苏省能源系统过程转化与减排技术工程实验室项目~~
关键词 微肋群 加热功率 REYNOLDS数 摩擦阻力系数 NUSSELT数 流动 对流 实验验证 micro pin fins heating power Reynolds number friction factor Nusselt number flow convection experimental validation
  • 相关文献

参考文献23

  • 1Haleh Shafeie, Omid Abouali, Khosrow Jafarpur, Goodarz Ahmadi. Numerical study of heat transfer performance of single-phase heat sinks with micro pin-fin structures [J]. Applied Thermal Engineering, 2013, 58: 68-76.
  • 2Carlos A Rubio-Jimenez, Satish G Andlikar, Abel Hernandez-Guerrero. Performance of online and offset micro pin-fin heat sinks with variable fin density [J]. IEEE Transactions on Components, Packaging and Manufacturing Technology, 2013, 3 (1): 86-93.
  • 3Reeser A, Bar-Cohen A, Hetsroni G. High quality flow boiling heat transfer and pressure drop in microgap pin fin arrays [J]. International Journal of Heat and Mass Transfer, 2014, 78: 974-985.
  • 4Liu M, Liu D, Xu S, Chen Y. Experimental study on liquid flow and heat transfer in micro square pin fin heat sink [J]. International Journal of Heat and Mass Transfer, 2011, 54: 5602-5611.
  • 5Shenoy S, Tullius J F, Bayazitoglu Y. Minichannels with carbon nanotube structured surfaces for cooling applications [J]. International Journal of Heat and Mass Transfer, 2011, 54: 5379–5385.
  • 6Adewumi O O, Bello-Ochende T, Meyer J P. Constructal design of combined microchannel and micro pin fins for electronic cooling [J]. International Journal of Heat and Mass Transfer, 2013, 66: 315-323.
  • 7Sidy Ndao, Hee Joon Lee, Yoav Peles, Michael K Jensen. Heat transfer enhancement from micro pin fins subjected to an impinging jet [J]. International Journal of Heat and Mass Transfer, 2012, 55: 413-421.
  • 8Liu Z G, Zhang C W, Guan N. Experimental investigation on resistance characteristics in micro/mini cylinder group [J]. Experimental Thermal and Fluid Science, 2011, 35: 226-233.
  • 9Mei Deqing, Lou Xinyang, Qian Miao, Yao Zhehe, Liang Lingwei, Chen Zichen. Effect of tip clearance on the heat transfer and pressure drop performance in the micro-reactor with micro-pin-fin arrays at low Reynolds number [J]. International Journal of Heat and Mass Transfer, 2014, 70: 709-718.
  • 10Qu Wei-lin, Siu-Ho A. Liquid single-phase flow in an array of micro-pin-fins (Part Ⅰ): Heat transfer characteristics [J]. Journal of Heat Transfer, 2008, 130 (12): 122402-1-11.

二级参考文献81

  • 1陶毓伽,淮秀兰,李志刚,蔡军.大功率固体激光器冷却技术进展[J].激光杂志,2007,28(2):11-12. 被引量:24
  • 2Mkuradse J 张瑞瑾译.粗糙管中的水流的规律[M].北京:水利出版社,1957..
  • 3Sparrow E M,Kang S S.Longitudinally-finned cross flow tube banks and their heat transfer and pressure drop characteristics[J].Int.J.Heat Mass Transfer,1985,28 (2):339-350.
  • 4Sparrow E M.Grannis V B.Pressure drop characteristics of heat exchangers consisting of arrays of diamond-shaped pin fins[J].Int.J.Heat Mass Transfer,1991,34(3):589-600.
  • 5Short Jr B E,Raad P E,Price D C.Performance of pin fin cast aluminum coldwalls(Ⅰ):Friction factor corrclations[J].J.Thermophys.Heat Transfer,2002,16(3):389-396.
  • 6Short Jr B E,Price D C,Raad P E.Design of cast pin fins coldwalls for air-cooled electronic systems[J].J.Electron.Packag.,2004,126:67-73.
  • 7Kosar A,Mishra C,Peles Y.Laminar flow across a bank of low aspect ratio micro pin fins[J].J.Fluids Engineering,2005,127:419-430.
  • 8Kosar A,Peles Y.Thermal-hydraulic performance of MEMS-based pin fin heat sink[J].J.Heat Transfer,2006,128:121-131.
  • 9Peles Y,Kosar A,Mishra C,et al.Forced convective heat transfer across a pin fin micro hcat sink[J].Int.J.Heat Mass Transfer,2005,48:3615-3627.
  • 10Moores K A,Joshi Y K.Effect of tip clearance on the thermal and hydrodynamic performance of a shrouded pin fin array[J].J.Heat Transfer,2003,125:999-1006.

共引文献47

同被引文献15

引证文献2

二级引证文献5

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部