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首页> 外文期刊>International Journal of Technology >Thermal Performance of Carbon Nanotube Nanofluids in Solar Microchannel Collectors: an Experimental Study
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Thermal Performance of Carbon Nanotube Nanofluids in Solar Microchannel Collectors: an Experimental Study

机译:碳纳米管纳米流体在太阳能微通道集热器中的热性能:实验研究

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摘要

Many studies show that nanofluids, especially with carbon nanotubes, improve heat transfer. Other studies show that a nanofluid is a good candidate for solar systems because of its good absorptivity. We are facing an increasing number of miniaturized and more powerful systems. Especially in microelectronics, small heat sinks with high heat transfer are being developed, called micro-channel heat sinks (MCHS). In this paper, the heat transfer behavior of carbon nanotube–water nanofluid in a microchannel solar collector is studied experimentally. The exchanger is composed of 16 micro-channel hydraulic diameters of 1 mm and a glass or quartz cover with a surface area of 25 cm2. Solar radiation is simulated by a halogen lamp. The experimental set-up includes a solar meter, pressure, and temperature sensors, and it is allowed to control the flow. The nanofluid is a solution of water containing a 0.01%, 0.05%, 0.1%, and 0.5% weight fraction, respectively, of the carbon nanotubes, which are 9.2 nm in diameter and 1.5 μm in length. Viscosity and density are measured experimentally. The evolution of efficiency and the pressure drop are presented according to the Reynolds number and are compared with the results obtained with distilled water.
机译:许多研究表明,纳米流体,尤其是碳纳米管,可以改善热传递。其他研究表明,纳米流体由于其良好的吸收性而成为太阳能系统的理想选择。我们正面临着越来越多的小型化和功能强大的系统。尤其是在微电子领域,正在开发具有高热传递的小型散热器,称为微通道散热器(MCHS)。本文通过实验研究了碳纳米管-水纳米流体在微通道集热器中的传热行为。该交换器由16个1 mm的微通道水力直径和一个表面积为25 cm2的玻璃或石英盖组成。太阳辐射由卤素灯模拟。实验装置包括日光计,压力和温度传感器,并且可以控制流量。纳米流体是分别包含0.01%,0.05%,0.1%和0.5%重量分数的碳纳米管的水溶液,碳纳米管的直径为9.2 nm,长度为1.5μm。粘度和密度通过实验测量。根据雷诺数表示效率的变化和压降,并将其与蒸馏水的结果进行比较。

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