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首页> 外文期刊>Renewable energy >Comparative study of air and argon gases between cover and absorber coil in a cylindrical solar water heater: An experimental study
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Comparative study of air and argon gases between cover and absorber coil in a cylindrical solar water heater: An experimental study

机译:圆柱形太阳能热水器盖与吸收器盘管之间空气和氩气的比较研究:实验研究

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摘要

In this study, the effect of various gases filling the space between the cover and the absorber coil on the thermal performance of a cylindrical solar water heater (CSWH) is experimentally investigated. Since the Prandtl number for argon gas is less than that for the air, the thermal performance of the CSWH increases. The experiments are conducted for mass flow rates of 2.5, 3, 3.5 and 4 kg/h. The results show that an increase in the flow rate leads to a decrease in the temperature difference the of water between the inlet and outlet of the coil due to reduction of the residence time of the fluid. The energy efficiency of the collector reaches its maximum at the mass flow rate until 3.5 kg/h, and then reduces at higher values of mass flow rate because the water temperature difference decreases dramatically. Hence, the optimum mass flow rate for a cylindrical collector is reported as 3.5 kg/h. The maximum energy efficiencies for argon and air are 52.14% and 48.17%, respectively. Finally, the constructed cylindrical solar water heater is also economically compared to a flat plate collector (FPC) and an electric water heater with similar thermal efficiency. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在这项研究中,实验研究了各种气体填充罩和吸收器线圈之间的空间对圆柱形太阳能热水器(CSWH)的热性能的影响。由于氩气的普朗特数小于空气的普朗特数,因此CSWH的热性能提高。对于2.5、3、3.5和4kg / h的质量流率进行实验。结果表明,由于减少了流体的停留时间,因此流量的增加导致盘管的入口和出口之间的水的温度差α减小。集热器的能量效率在质量流量达到3.5 kg / h时达到最大值,然后在较高的质量流量时降低,因为水温差急剧降低。因此,圆柱形收集器的最佳质量流率据报道为3.5 kg / h。氩气和空气的最大能量效率分别为52.14%和48.17%。最后,与具有类似热效率的平板集热器(FPC)和电热水器相比,在经济上还可以比照所构造的圆柱形太阳能热水器。 (C)2018 Elsevier Ltd.保留所有权利。

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