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Improving the performance of heat pipe embedded evacuated tube collector with nanofluids and auxiliary gas system

机译:利用纳米流体和辅助气体系统提高热管嵌入式真空管集热器的性能

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An attempt was made to design an evacuated tube heat pipe solar collector (ETHPSC) with a gas package for a four-member family to supply the required energy and to evaluate the effect of different nanofluids on its performance. CuO, TiO2 and MWCNT nanofluids were used, whose performance was compared with water as the working fluid. The given system was tested in the weather conditions of Sanandaj city, Iran. The results showed the maximum temperature of output working fluid from collector was recorded in second half of august 2016 between 13:00 and 15:00 p.m. and in second half of October 2016 between 12:00 and 14:30, at which time solar radiation intensity and air temperature were at their maximum level. MWCNT, CuO and TiO2 nanofluids, owing to high thermophysical properties, had a better performance than water. The fuel consumption saving of the designed solar system, compared to the common package system, during the testing period was found to be 67.7% in August and 42.2% in October. With nanoparticles MWCNT, CuO and TiO2, compared to water, the efficiency of collector increased by 25%, 12% and 5%, respectively in August and by 25%, 15% and 7%, respectively in October. (C) 2018 Elsevier Ltd. All rights reserved.
机译:试图设计一种带气袋的真空管式热管太阳能集热器(ETHPSC),以供四人家庭使用,以提供所需的能量并评估不同纳米流体对其性能的影响。使用了CuO,TiO2和MWCNT纳米流体,并与水作为工作流体进行了比较。给定的系统在伊朗Sanandaj市的天气条件下进行了测试。结果表明,收集器输出的工作流体的最高温度在2016年8月下半月的13:00至15:00之间记录。在2016年10月下半月的12:00至14:30之间,此时太阳辐射强度和气温处于最高水平。 MWCNT,CuO和TiO2纳米流体由于具有较高的热物理性质,其性能优于水。与普通包装系统相比,设计的太阳能系统在测试期间的燃油消耗节省额是8月的67.7%和10月的42.2%。与水相比,使用纳米碳纳米管MWCNT,CuO和TiO2,收集器的效率在8月分别提高了25%,12%和5%,在10月分别提高了25%,15%和7%。 (C)2018 Elsevier Ltd.保留所有权利。

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