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首页> 外文期刊>International Journal of Heat and Mass Transfer >High performance copper-water heat pipes with nanoengineered evaporator sections
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High performance copper-water heat pipes with nanoengineered evaporator sections

机译:带有纳米工程蒸发器部分的高性能铜水热管

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摘要

This experimental investigation aims to enhance the performance of heat pipes through nanoengineering the evaporator section, by integrating hydrophilic copper oxide (CuO) nanowires on the inner surface. Two types of CuO nanowires have been employed. Copper pipes measuring 440 mm in length with 12.7 mm O.D. and 0.8 mm wall thickness with inner grooves were used to manufacture heat pipes. All heat pipes were charged with ultra-filtered deionized (DI) water as a working fluid. By employing the hydrophilic CuO nanowires coating in the evaporator section of a heat pipe, its performance is substantially enhanced compared to a heat pipe with identical dimensions without the coating. Specifically, thermal resistance is reduced by 81.2% when using Type I CuO and 72% using Type II CuO nanowires compared to a heat pipe without coatings. The effects of the working load and orientation on the heat pipe thermal resistance have been systematically examined. (C) 2018 Elsevier Ltd. All rights reserved.
机译:该实验研究旨在通过对内表面整合亲水性氧化铜(CuO)纳米线,通过对蒸发器部分进行纳米工程设计来提高热管的性能。已经使用两种类型的CuO纳米线。铜管长440毫米,外径12.7毫米。壁厚为0.8毫米,带有内部凹槽,用于制造热管。所有热管均装有超滤去离子(DI)水作为工作流体。通过在热管的蒸发器部分中采用亲水性的CuO纳米线涂层,与具有相同尺寸但没有涂层的热管相比,其性能得到了显着提高。具体而言,与不带涂层的热管相比,使用I型CuO时,热阻降低81.2%,使用II型CuO纳米线时,热阻降低72%。系统地研究了工作负载和方向对热管热阻的影响。 (C)2018 Elsevier Ltd.保留所有权利。

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