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Experimental and numerical investigations on the thermal performance of a modified evacuated tube solar collector: Effect of the bypass tube

机译:改进型真空管太阳能集热器的热性能的实验和数值研究:旁通管的影响

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Many factors impact the thermal efficiency of the evacuated tube solar collectors (ETSCs) and numerous studies have been carried out to increase the efficiency of ETSCs. In this study, the stagnant region at the bottom of the evacuated tube has been removed using a bypass tube to connect the storage tank to the bottom of the modified evacuated tube. The thermal performance of a modified evacuated tube solar collector (METSC) has been investigated experimentally and numerically. The thermal characteristics of the METSC were compared to those of a commercial sample under equal environmental conditions. Furthermore, the impact of the diameter of the bypass pipe on the velocity profile, and temperature distribution of the fluid inside the modified collector has been investigated numerically to achieve the optimum diameter. The results demonstrate that this structure modification improves the collector performance due to removing the stagnant region at the bottom of the evacuated tube and the storage tank. This modification made the temperature distribution inside the pipe and tank more uniform, and increased the efficiency up to 11%. Moreover, useful gain of the solar collector in the modified model was 25% more than that of the typical model over a one-hour period. In addition, for the same duration, the average temperature of water inside the tank enhanced by 1.5 degrees C in the METSC in comparison to the typical model under equal environmental conditions.
机译:许多因素影响真空管太阳能集热器(ETSC)的热效率,并且进行了许多研究以提高ETSC的效率。在这项研究中,已使用旁路管将真空罐底部的停滞区域移除,该旁路管将储罐连接到改进的真空管的底部。改进的真空管太阳能集热器(METSC)的热性能已通过实验和数值研究。在相同的环境条件下,将METSC的热特性与商业样品的热特性进行了比较。此外,已对旁路管的直径对速度分布的影响以及改进型集热器内部流体的温度分布进行了数值研究,以实现最佳直径。结果表明,由于去除了真空管和储罐底部的停滞区域,这种结构改进提高了集热器性能。这种修改使管道和罐内的温度分布更加均匀,效率提高了11%。此外,在一个小时的时间内,改进模型中太阳能收集器的有用增益比典型模型高25%。此外,在相同的持续时间下,与相同环境条件下的典型模型相比,METSC中水箱内水的平均温度提高了1.5摄氏度。

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