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首页> 外文期刊>International Journal of Heat and Mass Transfer >Thermal resistance of screen mesh wick heat pipes using the water-based Al_2O_3 nanofluids
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Thermal resistance of screen mesh wick heat pipes using the water-based Al_2O_3 nanofluids

机译:水性Al_2O_3纳米流体的丝网芯吸热管的热阻。

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摘要

In the present study, the effect of nanofluids on the thermal performance of heat pipes is experimentally investigated by testing circular screen mesh wick heat pipes using water-based Al_2O_3 nanofluids with the volume fraction of 1.0 and 3.0 Vol.%. The wall temperature distributions and the thermal resistances between the evaporator and the adiabatic sections are measured and compared with those for the heat pipe using Dl water. The averaged evaporator wall temperatures of the heat pipes using the water-based Al_2O_3 nanofluids are much lower than those of the heat pipe using DI water. The thermal resistance of the heat pipe using the water-based Al_2O_3 nanofluids with the volume fraction of 3.0 Vol.% is significantly reduced by about 40% at the evaporator-adiabatic section. Also, the experimentally results implicitly show that the water-based Al_2O_3 nanofluids as the working fluid instead of Dl water can enhance the maximum heat transport rate of the heat pipe. Based on the two dear evidences, we conclude that the major reason which can not only improve the maximum heat transport rate but also significantly reduce the thermal resistance of the heat pipe using nanofluids is not the enhancement of the effective thermal conductivity which most of previous researchers presented. Especially, we experimentally first observe the thin porous coating layer formed by nanoparticles suspended in nanofluids at wick structures. Based on the observation, it is first shown that the primary mechanism on the enhancement of the thermal performance for the heat pipe is the coating layer formed by nanoparticles at the evaporator section because the layer can not only extend the evaporation surface with high heat transfer performance but also improve the surface wettability and capillary wicking performance.
机译:在本研究中,通过使用体积分数分别为1.0和3.0 Vol。%的水基Al_2O_3纳米流体测试圆筛网芯吸热管,实验研究了纳米流体对热管热性能的影响。测量蒸发器和绝热部分之间的壁温度分布和热阻,并将其与使用去离子水的热管的壁温分布和热阻进行比较。使用水基Al_2O_3纳米流体的热管的平均蒸发器壁温远低于使用去离子水的热管的平均蒸发器壁温。使用体积分数为3.0 Vol。%的水基Al_2O_3纳米流体的热管的热阻在蒸发器绝热段显着降低了约40%。此外,实验结果隐含地表明,以水基Al_2O_3纳米流体代替工作水代替工作水可以提高热管的最大传热速率。基于这两个宝贵的证据,我们得出结论,不仅可以提高最大传热速率,而且可以显着降低使用纳米流体的热管的热阻,其主要原因不是提高大多数研究人员的有效导热率。提出了。特别是,我们首先在实验上观察由悬浮在灯芯结构的纳米流体中的纳米颗粒形成的薄多孔涂层。根据观察结果,首先显示出提高热管热性能的主要机理是在蒸发器部分由纳米颗粒形成的涂层,因为该层不仅可以扩展具有高传热性能的蒸发表面而且还改善了表面润湿性和毛细管芯吸性能。

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