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Numerical and experimental investigation of a thermosiphon solar water heater system thermal performance used in domestic applications

机译:热虹吸太阳能热水器系统热性能的数值实验研究,用于国内应用

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摘要

The thermosiphon is a passive heat exchange method, which circulates a fluid within a system without the need for any electrical or mechanical pumps. The thermosiphon is based on natural convection where the thermal expansion occurs when the temperature difference has a corresponding difference in density across the loop. Thermosiphons are used in different applications such as solar energy collection, automotive systems, and electronics. The current study aims to investigate thermosiphon thermal performance used in domestic applications. The thermal performance of a thermosiphon has been studied by many researchers; however, according to the knowledge of the authors, the influence of the amount of the working fluid on the thermal output has not yet been investigated. Therefore, the influence of the amount of working fluid within the riser pipe has been investigated on the thermal performance of the thermosiphon. In the current study, a computational fluid dynamics model is involved. This model has been validated by comparison with experimental findings. The maximum variation between numerical and experimental results is 14.2% and 11.2% for the working fluid at the inlet and outlet of the absorber pipe, respectively. Furthermore, the results show that the amount of working fluid inside the closed thermosiphon has a great influence on the thermal performance of the system. Additionally, it is found that Case-B, when the amount of working fluid is less than by 10% compared to the traditional model, is the best case among all cases under study. Furthermore, a correlation equation to predict water temperature at the exit of the absorber pipe has been established with an accuracy of 95.05%.
机译:热虹吸是一种被动热交换方法,其在系统内循环流体而无需任何电气或机械泵。热虹吸管基于自然对流,当温度差具有横跨环的密度相应的差异时,发生热膨胀。热虹吸物用于不同的应用,如太阳能集合,汽车系统和电子产品。目前的研究旨在研究国内应用中的热虹吸热性能。许多研究人员研究了热虹吸管的热性能;然而,根据作者的知识,尚未研究工作流体对热输出量的影响。因此,已经研究了在热虹吸管的热性能下研究了提升管内的工作流体量的影响。在目前的研究中,涉及计算流体动力学模型。该模型通过与实验结果进行了验证。数值和实验结果之间的最大变化分别为吸收管的入口和出口的工作流体的14.2%和11.2%。此外,结果表明,闭合热虹吸管内的工作流体量对系统的热性能产生了很大影响。另外,发现案例-B,与传统模型相比,工作流体量小于10%时,是在研究中所有病例中的最佳案例。此外,已经建立了预测吸收管出口处的水温的相关方程,精度为95.05%。

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