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矩形微槽群换热器换热特性的数值研究
引用本文:郭春海,杨旸,陈希良,张文武. 矩形微槽群换热器换热特性的数值研究[J]. 热科学与技术, 2014, 13(3): 228-234
作者姓名:郭春海  杨旸  陈希良  张文武
作者单位:中国科学院 宁波材料技术与工程研究所,浙江 宁波,315201
摘    要:设计了一种矩形微槽群换热器,分别对单个槽和整个换热器传热过程进行了数值模拟。对不同流量以及不同热流下的流场和温度场进行模拟,并与理论分析结果比较,两者相吻合。分析结果表明,微换热器的热阻随着流量的增大而变小,温度变低。当流量为200 mg/s时,微换热器最高温升为47 K,表明当达到一定流量的时候,微换热器温升能控制在有效地范围内,能很好地保证微器件的工作状态。

关 键 词:微槽道  微槽群  传热  数值模拟
收稿时间:2014-05-22
修稿时间:2014-05-22

Numerical study on heat transfer characteristics of rectangular microgrooves heat exchanger
Guo Chun-hai,Yang Yang,Chen Xi-liang and Zhang Wen-wu. Numerical study on heat transfer characteristics of rectangular microgrooves heat exchanger[J]. Journal of Thermal Science and Technology, 2014, 13(3): 228-234
Authors:Guo Chun-hai  Yang Yang  Chen Xi-liang  Zhang Wen-wu
Affiliation:Ningbo institute of material technology and engineering,Chinese academy of sciences,Ningbo institute of material technology and engineering,Chinese academy of sciences,Ningbo institute of material technology and engineering,Chinese academy of sciences and Ningbo institute of material technology and engineering,Chinese academy of sciences
Abstract:A rectangular microchannel heat exchanger was designed. The heat transfer processes of a single channel and a whole heat exchanger have been simulated. The flow and temperature fields under different flow rates and heat fluxes were obtained. The predictions agree well with the theoretical analysis. It is found that the thermal resistant of the microchannel heat exchanger decreases with the increase of the flow rate and the temperature of heat exchanger drops accordingly. The maximum temperature rise is 47K for a flow rate of 200mg/s. The results show that the temperature rise of the microchannel heat exchanger can be controlled within a valid range ensuring the working state of micro devices.
Keywords:microchannel  microgrooves  heat exchange  numerical simulation
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