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Conceptual approach on harvesting PV dissipated heat for enhancing water evaporation

机译:收获PV消散热量升高水蒸发的概念方法

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The fluctuating sun radiation in tropical climate conditions has significantly affected the output performance of the PV array and also processes related to direct-sun drying. Apart from this, the dissipated heat under PV array projected from photonic effects of generating electricity is currently wasted to the environment. This study shares some conceptual idea on a new approach for harvesting the dissipated heat energy from PV arrays for the purpose of enhancing water evaporation process. Field measurements for ambient temperature (Ta) and PV bottom surface temperature (FFb) are measured and recorded for calculating the evaporation rates at different condition in real time. The waste heat dissipated in this condition is proposed as a medium to increase evaporation thru speeding up the water condensation process. The significant increase of water evaporation rate based on Penman equation supports the idea of integration with landed PV array structures.
机译:热带气候条件下的阳光辐射显着影响了PV阵列的输出性能,以及与直接阳光干燥有关的方法。除此之外,从发电发电的光子效应下投影的光电阵列下的散热目前浪费在环境中。本研究股票以一种新方法分享了一些用于从PV阵列收获消散热能的新方法,以提高水蒸发过程。测量环境温度(TA)和PV底表面温度(FFB)的现场测量,并记录用于实时在不同条件下计算蒸发速率。提出了在这种情况下散发的废热作为培养基,以提高蒸发,加速水冷凝工艺。基于Penman方程的水蒸发速率的显着增加支持与降落的PV阵列结构的集成思想。

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