材料科学
相变材料
光伏系统
沉浸式(数学)
水冷
热的
热阻
火用
传热
传热系数
性能系数
核工程
热力学
电气工程
工程类
热交换器
物理
制冷剂
纯数学
数学
作者
Yiping Wang,Chao Chen,Qunwu Huang,Xue Kang,Miao Chen,Huilin Wang
标识
DOI:10.1016/j.enconman.2017.07.054
摘要
This paper presents an optimized ethanol phase-change immersion cooling method to obtain lower temperature of dense-array solar cells in high concentrating photovoltaic system. The thermal performances of this system were compared with a conventional active water cooling system with minichannels from the perspectives of start-up characteristic, temperature uniformity, thermal resistance and heat transfer coefficient. This paper also explored the influences of liquid filling ratio, absolute pressure and water flow rate on thermal performances. Dense-array LEDs were used to simulate heat power of solar cells worked under high concentration ratios. It can be observed that the optimal filling ratio was 30% in which the thermal resistance was 0.479 °C/W and the heat transfer coefficient was 9726.21 W/(m2·°C). To quantify the quality of energy output of two cooling systems, exergy analysis are conducted and maximum exergy efficiencies were 17.70% and 11.27%, respectively. The experimental results represent an improvement towards thermal performances of ethanol phase-change immersion cooling system due to the reduction in contact thermal resistance. This study improves the operation control and applications for ethanol phase-change immersion cooling technology.
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