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Thermal and structure analyses of high concentrator solar cell under confined jet impingement cooling

机译:有限射流冲击冷却下高聚光太阳能电池的热和结构分析

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The high solar light concentration onto the photovoltaic cell leads to extremely high cell temperature, which significantly decreases the cell efficiency and degrades its lifetime due to the thermal stresses. One of the main challenges of these types of solar cells is to propose an efficient cooling technique that allows the cells to operate under its recommended operating conditions. Therefore, the focus of this study was to develop a comprehensive three-dimensional model for the high concentrator photovoltaic/thermal (HCPV/T) system. This model comprises a thermal model for a triple-junction solar cell integrated with a thereto-fluid model for four distinct designs of confined jet impingement heat sinks. The results showed that the cell electrical efficiency increased with the coolant flow rate, and sufficient temperature uniformity can be achieved by the jet impingement configurations. Additionally, the use of jet impingement configurations consumed a slight pumping power less than 1% of the generated power in the solar cell. The maximum local temperature of uncooled solar cell was predicted to reach 1360 degrees C under solar concentration ratio of 1000 Suns. Under the same conditions, the single jet design reduced the maximum local temperature to about 65 degrees C with coolant mass flow rate of 50 g/min. It should be noted that the thermal stress substantially decreased with the increasing coolant mass flow rate. Exergetic analysis showed that the single jet design attained the maximum total exergy efficiency of 53.25% at the flow rate of 25 g/min.
机译:太阳能电池上的高太阳光聚集会导致极高的电池温度,这会显着降低电池效率,并由于热应力而降低其寿命。这些类型的太阳能电池的主要挑战之一是提出一种有效的冷却技术,该技术可使电池在其推荐的工作条件下工作。因此,本研究的重点是为高聚光器光伏/热(HCPV / T)系统开发一个综合的三维模型。该模型包括用于三结太阳能电池的热模型,并与用于有限射流冲击散热器的四种不同设计的流体模型集成在一起。结果表明,电池电效率随冷却剂流量的增加而增加,并且通过射流冲击结构可以实现足够的温度均匀性。另外,使用射流冲击构造消耗的泵浦功率略小于太阳能电池中发电功率的1%。预测在1000太阳的太阳集中率下,未冷却太阳能电池的最高局部温度将达到1360摄氏度。在相同条件下,单喷嘴设计将最大局部温度降低到约65摄氏度,冷却剂质量流量为50 g / min。应该注意的是,随着冷却剂质量流量的增加,热应力会大大降低。能量分析表明,单喷头设计在25 g / min的流速下可达到53.25%的最大总火用效率。

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