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Experimental study and numerical validation on the effect of inclination angle to the thermal performance of solar heat pipe photovoltaic/thermal system

机译:实验研究与数值验证对太阳能热管光伏/热系统热性能倾斜角度效果的数值验证

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摘要

Effect of inclination angle to the thermal performance of a heat pipe photovoltaic/thermal system (HPPV/T) system was rarely reported. In the present study, a HP-PV/T system was firstly constructed in an Enthalpy Difference Laboratory, where inclination angle was experimentally managed as the only variable. Meanwhile, a comprehensive numerical model for the HP-PV/T system was developed to validate the experiments. Particularly, a 3D model for the inclined heat pipe was also firstly involved. The simulation results show that liquid film thickness within the condenser or the evaporator stabilizes at a constant value at inclining condition. The relative filmwise thermal resistance of the condenser decreases first and then increases with inclination angle; while the evaporator shows an opposite trend to the condenser. The overall thermal resistance of solar heat pipe is mainly determined by the evaporator while the evaporator is mainly determined by the effective height of the liquid pool. The experimental and simulation results both indicate that the optimum inclination angle is 40 degrees. The proposed model agrees well with the experimental results at big inclination angles (= 20 degrees), it is practicable to reveal the influence of inclination angle to the thermal performance of a HP-PV/T system. (C) 2021 Elsevier Ltd. All rights reserved.
机译:倾斜角度对热管光伏/热系统(HPPV / T)系统的热性能的影响很少。在本研究中,首先在焓差实验室中构建HP-PV / T系统,其中倾斜角度是实验管理的唯一变量。同时,开发了一种HP-PV / T系统的综合数值模型来验证实验。特别地,还首先涉及倾斜热管的3D模型。仿真结果表明,冷凝器内的液体膜厚度或蒸发器在倾斜条件下以恒定值稳定。冷凝器的相对胶片热阻首先降低,然后用倾斜角度增加;蒸发器显示出冷凝器的相反趋势。太阳能热管的总热阻主要由蒸发器确定,而蒸发器主要由液体池的有效高度决定。实验和仿真结果均表明,最佳倾斜角度为40度。所提出的模型与实验结果吻合较大的倾角(= 20度)吻合良好,可切实可行,揭示倾斜角度与HP-PV / T系统的热性能的影响。 (c)2021 elestvier有限公司保留所有权利。

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