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过程参数描述的等壁温平行平板间层流对流换热特性 被引量:1

Laminar Heat Transfer Characteristics between Parallel Planes with Uniform Wall Temperature under Process Parameter Description
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摘要 传热过程中的过程参数为傅立叶定律定义的热通量.对等壁温平行平板间层流对流换热进行过程参数描述,揭示了壁面上和流体内部流动速度和速度梯度对对流换热的贡献.结果表明:如果把传热过程以过程参数进行描述可以获得对传热的深刻表述和理解. The process parameter of heat transfer is heat flux defined by Fourier law. In this paper, the characteristics of laminar convective heat transfer between parallel planes with uniform wall temperature are studied under process parameter description. With this description, the effects of velocity and velocity gradient on convective heat transfer on the wall surface and inside flow region can be divided. The results show that when the heat transfer is described by process parameter,the deeper understanding on convective heat transfer can be obtained.
出处 《兰州交通大学学报》 CAS 2011年第3期41-46,共6页 Journal of Lanzhou Jiaotong University
基金 国家自然科学基金(50876040)
关键词 对流换热描述 热通量 速度 速度梯度 heat transfer characteristics heat flux velocity velocity gradient
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参考文献10

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二级参考文献7

  • 1Kays W M, Crawford M E, Weigand B. Convection Heat and Mass Transfer. 4th ed. New York: Mc Graw Hill, 2005.
  • 2Wang L B, Li X X, Lin Z M, et al. Additional description of laminar heat convection in tube with uniform wall temperature. J Thermophys Heat Transf, 2009, 23(1): 200--205.
  • 3Wang L B, Zhang Q, Li X X. The role of velocity gradient in laminar convective heat transfer through a tube with uniform wall heat flux. Eur J Phy, 2009, 30:823-833.
  • 4Wang L B, Huang K, Lin Z M, et al. The contribution of the velocity gradient to laminar convective heat transfer of a square duct with uniform wall heat flux. JP Heat Mass Transf, 2009, 3:95-115.
  • 5Wang L B, Huang K, Zhang Y H, et al. A way to explain the thermal boundary effects on laminar convection through a square duct. Front Energ Power Eng China, 2009, doi: 10.1007/s11708-010-0020-2.
  • 6Li Z Y, Tao W Q. A new stability-guaranteed second-order difference scheme. Numer Heat Tr B-Fund, 2002, 42:349.
  • 7Patankar S V. Numerical Heat Transfer and Fluid Flow. Washington: Hemisphere, 1981.

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