Research on the preparation of urchin-like CuO-H2O nanofluids and its application in heat pipe

Guangbin Duan, Z. Cao, Qi Chen
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Abstract

In this paper, the urchin-like cupric oxide-water (CuO-H2O) nanofluids has been prepared using two-step method via ultrasonic concussion which the CuO nanoparticles are uniformly dispersed in deionised water (DI water), and the urchin-like CuO nanoparticles has been obtained via hydrothermal method. The structural properties of CuO nanoparticles are characterised via XRD and SEM analysis, indicating that the nanoparticles have uniform size and good dispersibility. The thermal conductivity and the surface tension of the urchin-like CuO-H2O nanofluids have been studied in detail. The thermal conductivity and surface tension of the urchin-like CuO-H2O nanofluids are both higher than the based fluids, and they increased with the mass fraction increasing. The heat transfer performance of heat pipe using urchin-like CuO nanofluids are experimentally measured on the condition of air cooling. The results show that the start-up time of the heat pipes using nanofluids are greatly lower than that of DI water, and reduce with the mass fraction increasing. The start-up temperature rise of heat pipe becomes larger than that of the heat pipe filled with DI water, and increased with the mass fraction increasing. The utilisation of nanofluids as working medium can enhance the heat transfer performance of the heat pipe.
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海胆状CuO-H2O纳米流体的制备及其热管应用研究
本文采用超声震荡两步法制备了海胆状氧化铜-水(CuO- h2o)纳米流体,将CuO纳米颗粒均匀分散在去离子水(DI水)中,并采用水热法制备了海胆状CuO纳米颗粒。通过XRD和SEM分析表征了纳米CuO的结构特性,表明纳米CuO具有均匀的粒径和良好的分散性。研究了海胆状CuO-H2O纳米流体的热导率和表面张力。海胆状CuO-H2O纳米流体的导热系数和表面张力均高于基流体,且随质量分数的增加而增大。在空气冷却条件下,对海胆状氧化铜纳米流体热管的换热性能进行了实验测量。结果表明:纳米流体的热管启动时间大大低于去离子水的热管启动时间,且随着质量分数的增加而缩短;热管的启动温升比注入去离子水的热管的启动温升大,并随着质量分数的增加而增大。利用纳米流体作为工质可以提高热管的传热性能。
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来源期刊
International Journal of Nanomanufacturing
International Journal of Nanomanufacturing Engineering-Industrial and Manufacturing Engineering
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