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A comprehensive study of the performance of a heat pipe by using of various nanofluids

机译:通过使用各种纳米流体来综合研究热管的性能

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In this paper, a two-dimensional numerical model is developed to simulate the performance of a heat pipe using various nanofluids. The effect of different nanofluids (prepared using alumina, copper oxide, and silver nanoparticles) at different concentrations and particle diameters on the performance of heat pipe is also studied by through finite volume method. The obtained results show that using a nanofluid instead of water leads to the increased thermal efficiency and reduction in heat at wall of the heat pipe. Also, the temperature difference between the evaporator and the condenser is a function of input power; this means that by an increase in the input capacity, the temperature difference between the evaporator and the condenser increases. It was observed that the use of nanofluid reduces the axial-flow pressure of the fluid inside the wick. As a result, the transmission of fluid flow inside the wick from the condenser to the evaporator is easily done with the cost of using a nanofluid. Moreover, with an increase in thermal capacity, fluid pressure drop becomes maximum and thus temperature difference between the evaporator and the condenser increases. (C) 2017 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:本文开发了一种二维数值模型来模拟热管使用各种纳米流体的性能。还通过有限体积法研究了不同浓度和颗粒直径的不同纳米流体(使用氧化铝,氧化铜和银纳米粒子制备)的影响,并通过有限体积法研究了热管的性能。所得结果表明,使用纳米流体而不是水导致热管壁上的热效率和热量的增加。而且,蒸发器和冷凝器之间的温差是输入功率的函数;这意味着通过增加输入容量,蒸发器和冷凝器之间的温差增加。观察到纳米流体的使用降低了芯中的流体的轴流压力。结果,通过使用纳米流体的成本,容易完成从冷凝器到蒸发器内的芯中的流体流动的传递。此外,随着热容量的增加,流体压降变为最大,因此蒸发器和冷凝器之间的温差增加。 (c)2017年日本粉末科技学会。由elsevier b.v发表。和日本粉末科技会。版权所有。

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