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Heat transfer enhancement of Al_2O_3-H_2O nanofluids flowing through a micro heat sink with complex structure

机译:流经具有复杂结构的微型散热器的Al_2O_3-H_2O纳米流体的传热增强

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摘要

The characteristic of flow and heat transfer of Al_2O_3-H_2O nanofluids flowing through a micro heat sink with complex structure under constant heat flux is investigated experimentally. The volume fraction and Reynolds number of Al_2O_3-H_2O nanofluids ranged from 0.1 vol.% to 1.0 vol.% and 100 to 700, respectively. Moreover, the effects of them on friction factor, Nusselt number, and thermal resistance are also considered. The results show that single phase model underestimates the friction factor and Nusselt number of nanofluids from the experiments. With increasing volume fraction and Reynolds number, both Nusselt number Nu and friction factor f of nanofluids increase while the average temperature at the bottom and thermal resistance decrease, as compared to deionized water. Moreover, new correlations of/and Nu are presented based on experimental data with the maximum deviation less than ± 5%. The performance evaluation plot shows that the higher slope of values, i.e., higher volume fraction of nanofluids, gives better comprehensive performance of heat transfer. The compound heat transfer enhancement techniques, i.e., cavities in the micro heat sink and nanofluids can obviously enhance heat transfer.
机译:实验研究了Al_2O_3-H_2O纳米流体在恒定热通量下流经复杂结构的微型散热器的流动和传热特性。 Al_2O_3-H_2O纳米流体的体积分数和雷诺数分别为0.1%(体积)至1.0%(体积)和100%至700%。此外,还考虑了它们对摩擦系数,努塞尔数和热阻的影响。结果表明,单相模型从实验中低估了纳米流体的摩擦因数和Nusselt数。与去离子水相比,随着体积分数和雷诺数的增加,纳米流体的努塞尔数Nu和摩擦系数f均增加,而底部的平均温度和热阻降低。此外,基于实验数据给出了/和Nu的新相关性,最大偏差小于±5%。性能评估图显示值的斜率越高,即纳米流体的体积分数越高,则传热的综合性能越好。复合传热增强技术,即微散热器和纳米流体中的空腔,可以明显增强传热。

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    Key Laboratory of Enhanced Heat Transfer and Energy Conservation Ministry of Education, College of Environmental and Energy Engineering, Beijing University of Technology, Beijing 100124, China;

    Key Laboratory of Enhanced Heat Transfer and Energy Conservation Ministry of Education, College of Environmental and Energy Engineering, Beijing University of Technology, Beijing 100124, China;

    Key Laboratory of Enhanced Heat Transfer and Energy Conservation Ministry of Education, College of Environmental and Energy Engineering, Beijing University of Technology, Beijing 100124, China;

    Key Laboratory of Enhanced Heat Transfer and Energy Conservation Ministry of Education, College of Environmental and Energy Engineering, Beijing University of Technology, Beijing 100124, China;

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  • 正文语种 eng
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  • 关键词

    Nanofluids; Micro heat sink; Experiment; Heat transfer enhancement; Performance evaluation plot;

    机译:纳米流体;微型散热器;实验;传热增强;绩效评估图;

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