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首页> 外文期刊>Journal of Materials Science >Applicability of silicon micro-finned heat sinks for 500x concentrating photovoltaics systems
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Applicability of silicon micro-finned heat sinks for 500x concentrating photovoltaics systems

机译:硅微翅片散热器对500倍聚光光伏系统的适用性

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In concentrating photovoltaic (CPV) applications, the sunlight is focused onto solar cells up to thousands of times and, without an adequate cooling system, the cell's temperature can dangerously raise over the operating temperature range in few seconds. In this study, an investigation on micro-finned heat sink for high concentrating photovoltaics has been conducted. The geometry of the system and the choice of the components play an important role in the thermal management of CPV. The size of cell, as well as the optics, can strongly affect the thermal behaviour of the CPV: the effects of the CPV geometry on the thermal performance of the heat sink are experimentally investigated and discussed in order to design an optimised system for passive cooling. A micro-fin array is developed to handle the heat generated by the cell and the system is studied in different conditions to prove the applicability of this passive solution to the harsh CPV conditions. It has been found that micro-fins are a suitable solution for passive cooling at concentrations up to 500x. Moreover, this kind of solutions shows the potential to achieve high mass-specific power values, proving its competitiveness in mobile or tracked systems, such as CPV.
机译:在聚光光伏(CPV)应用中,太阳光最多会聚焦在太阳能电池上数千次,并且如果没有适当的冷却系统,则太阳能电池的温度可能会在几秒钟的工作温度范围内危险地升高。在这项研究中,对用于高浓度光伏电池的微翅片散热器进行了研究。系统的几何形状和组件的选择在CPV的热管理中起着重要的作用。电池的尺寸以及光学器件都会严重影响CPV的热性能:实验研究并讨论了CPV几何形状对散热器热性能的影响,以便设计用​​于被动冷却的优化系统。开发了微翅片阵列来处理电池产生的热量,并在不同条件下对系统进行了研究,以证明该无源解决方案在恶劣的CPV条件下的适用性。已经发现,微翅片是用于被动冷却的合适解决方案,其浓度高达500倍。此外,这种解决方案还显示出实现高特定质量功率值的潜力,证明了其在CPV等移动或跟踪系统中的竞争力。

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