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本文建立了小型平板CPL蒸发器二维的整场数学模型,并用SIMPLE程序对蒸发器进行整场耦合求解.研究表明,平板型CPL蒸发器存在着侧壁效应传热极限,减小液体补偿腔的高度,减小侧壁以及下壁的厚度以及增加毛细芯的高度可以提高CPL的传热能力.

参考文献

[1] Figus C.;Bories S.;Prat M.;Le Bray Y. .Heat and mass transfer with phase change in a porous structure partially heated: Continuum model and pore network simulations[J].International Journal of Heat and Mass Transfer,1999(14):2557-2569.
[2] Z. C. Liu;W. Liu;A. Nakayama .Flow and heat transfer analysis in porous wick of CPL evaporator based on field synergy principle[J].Heat and mass transfer,2007(12):1273-1281.
[3] Z. M. Wan;W. Liu;Z. K. Tu;A. Nakayama .Conjugate numerical analysis of flow and heat transfer with phase change in a miniature flat plate CPL evaporator[J].International Journal of Heat and Mass Transfer,2009(1/2):422-430.
[4] 陶文铨.数值传热学[M].西安:西安交通大学出版社,2003
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