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Thermal performance and operational attributes of the startup characteristics of flat-shaped heat pipes using nanofluids

机译:使用纳米流体的扁平形热管启动特性的热性能和运行属性

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Thermal performance, transient behavior and operational start-up characteristics of flat-shaped heat pipes using nanofluids are analyzed in this work. Three different primary nanofluids namely, CuO, Al_2O_3, and TiO_2 were utilized in our analysis. A comprehensive analytical model, which accounts in detail the heat transfer characteristics within the pipe wall and the wick within the condensation and evaporation sections, was utilized. The results illustrate enhancement in the heat pipe performance while achieving a reduction in the thermal resistance for both flat-plate and disk-shaped heat pipes throughout the transient process. It was shown that a higher concentration of nanoparticles increases the thermal performance of either the flat-plate or disk-shaped heat pipes. We have also established that for the same heat load a smaller size flat-shaped heat pipe can be utilized when using nanofluids.
机译:在这项工作中分析了使用纳米流体的扁平形热管的热性能,瞬态行为和操作启动特性。在我们的分析中使用了三种不同的主要纳米流体,即CuO,Al_2O_3和TiO_2。利用了一个综合的分析模型,该模型详细说明了管壁内的传热特性以及冷凝和蒸发段内的油芯。结果表明,在整个过渡过程中,热管性能得到了提高,同时平板和盘状热管的热阻均降低了。结果表明,较高浓度的纳米颗粒可提高平板或盘状热管的热性能。我们还确定,对于相同的热负荷,在使用纳米流体时可以使用更小尺寸的扁平形热管。

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