[1]
Jensen K F1 Microchemical systems: status, challenges, and opport unities1 AIChE J1,1999, 45(10):2051-2054.
Google Scholar
[2]
Chen Guangwen, Yuan Quan. Micro-chemical Technology Journal of Chemical Industry and Engineering [J].Chemical engineering journal, 2003, 54(4):427-439.
Google Scholar
[3]
Su Shangmei, Zhang Yanan, Cheng Fangyuan, et al. Characteristic analysis and application perspective of microchannel heat exchanger [J]. District thermal heating, 2007.5:34-38.
Google Scholar
[4]
C P Tso, S P Mahulikar.Experimental verification of the role Brinkman number in micro channels using local parameters. International Journal of Heat and Mass Transfer.2000, 43:1838-1849.
DOI: 10.1016/s0017-9310(99)00241-0
Google Scholar
[5]
Weisberg A, Bau H H,et al. Analysis of Micro channels for Integrated Cooling. International Journal of Heat Mass Transfer.1992, 35:2465-2474.
DOI: 10.1016/0017-9310(92)90089-b
Google Scholar
[6]
Liao X S, Liu Y, Ning YQ, et al. The optimal design of structure parameter for micro channel heat sink[C].Proceedings of SPIE The International Society for Optical Engineering, 2002, 4914:181-186.
Google Scholar
[7]
Rao Zhenghua, Liao Shengming. Numerical simulation and performance optimization of the carbon dioxide microchannel gas cooler[J].Chemical engineering journal, 2005, 56(9):1721-1726.
Google Scholar
[8]
Huang Dongping, Liang Zhenqian, Ding Guoliang, et al. Characteristic Analysis of the Carbon dioxide Microchannel Gas Cooler Based on Models [J]. Chemical engineering journal, 2002, 53(8):832-836.
Google Scholar
[9]
A.C. Kirkwood C.W. Bullard.Modeling Design and Testing of a Micro channel Split-System Air Conditioner, ACRC TR-149(March 1999).
Google Scholar
[10]
Lu ping, Chen Jingping.Numerical Simulation of Flow Distribution in the Microchannel Parallel Flow Gas Cooler [J].Applied science journal, 2007, 25(3).
Google Scholar
[11]
Stief T, Langer O U, Schubert K.Numerical Investigations of Optimal Heat Conductivity in Micro heat Exchangers [J].Chemical Engineering and Technology, 1999, 22(4):297-303.
DOI: 10.1002/(sici)1521-4125(199904)22:4<297::aid-ceat297>3.0.co;2-y
Google Scholar
[12]
Y.P. Peles and S.Haber. A steady state one dimensional model for boiling two phase flow in triangular micro-channel International Journal of Multiphase Flow, 2000, 26(7): 1095-1115.
DOI: 10.1016/s0301-9322(99)00084-1
Google Scholar
[13]
J.M. Saiz Jabardo, W.Gonzales Mamani, M.R. Ianella. Modeling and experimental evaluation of an automotive air conditioning system with a variable capacity compressor, International Journal of Refrigeration 25(2002):1157-1172.
DOI: 10.1016/s0140-7007(02)00002-6
Google Scholar
[14]
Jian Min Yin, Clark Y.Bullard, Predrag S.Hrnjak. R-744 Gas cooler model development and validation, international journal of refrigeration 24(2001):692-701.
DOI: 10.1016/s0140-7007(00)00082-7
Google Scholar
[15]
He Bingqiang, Liang Rongguang, Chen Jirong. Manufacture of Carbon Dioxide Microchannel Parallel Flow Gas Cooler.
Google Scholar
[16]
He Bingqiang. Modeling and Characteristic Test of Carbon Dioxide Parallel Flow Gas Cooler.
Google Scholar