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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Thermal performance of screen mesh wick heat pipes using water-based copper nanofluids
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Thermal performance of screen mesh wick heat pipes using water-based copper nanofluids

机译:水性铜纳米流体的筛网芯吸热管的热性能

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摘要

Fairly stable surfactant free copper-distilled water nanofluids are prepared using prolonged sonication and homogenization. Thermal conductivity of the prepared nanofluid displays a maximum enhancement of ~ 15% for 0.5 wt% of Cu loading in distilled water at 30℃. The wall temperature distributions and the thermal resistances between the evaporator and the condenser sections of a commercial screen mesh wick heat pipe containing nanofluids are investigated for three different angular position of the heat pipe. The results are compared with those for the same heat pipe with water as the working fluid. The wall temperatures of the heat pipes decrease along the test section from the evaporator section to the condenser section and increase with input power. The average evaporator wall temperatures of the heat pipe with nanofluids are much lower than those of the heat pipe with distilled water. The thermal resistance of the heat pipe using both distilled water and nanofluids is high at low heat loads and reduces rapidly to a minimum value as the applied heat load is increased. The thermal resistance of the vertically mounted heat pipe with 0.5 wt% of Cu-distilled water nanofluid is reduced by ~27%. The observed enhanced thermal performance is explained in light of the deposited Cu layer on the screen mesh wick in the evaporator section of the heat pipe.
机译:使用长时间的超声处理和均质化可制备出相当稳定的无表面活性剂的无铜蒸馏水纳米流体。制备的纳米流体的热导率在30℃蒸馏水中的铜含量为0.5 wt%时显示出最大〜15%的提高。针对热管的三个不同角度位置,研究了包含纳米流体的商用筛网芯吸热管的蒸发器和冷凝器部分之间的壁温分布和热阻。将结果与相同的水作为工作流体的热管的结果进行比较。热管的壁温沿着测试部分从蒸发器部分到冷凝器部分降低,并随输入功率的增加而升高。具有纳米流体的热管的平均蒸发器壁温远低于具有蒸馏水的热管的平均蒸发器壁温。在低热负荷下,使用蒸馏水和纳米流体的热管的热阻较高,并且随着所施加的热负荷增加,热阻迅速降低至最小值。含0.5 wt%的铜蒸馏水纳米流体的垂直安装的热管的热阻降低了约27%。观察到的增强的热性能是根据在热管蒸发器部分的筛网芯上沉积的Cu层来解释的。

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