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Exergetic Analysis of Hybrid Photovoltaic - Thermal Solar Collectors Coupled to Organic Rankine Cycles

机译:混合太阳能朗肯循环的光伏-热太阳能集热器的能值分析。

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In this work, the application of hybrid solar modules that combine photovoltaic panels and solar thermal collectors coupled with a low-temperature thermal cycle such as the Organic Rankine Cycle is discussed, their main purpose being an increase in the total electric power production per available area. This work will study the thermal and electrical power production efficiency of the hybrid system, the increase in the PV module electric conversion efficiency due to their cooling through heat transfer to the thermal cycle and the total exergetic efficiency of the system. A simplified simulation of the system in steady state conditions based on a thermal efficiency model will be performed with the aid of the EES (Engineering Equation Solver) software using climate data from Campinas, S?o Paulo, Brazil. The study shows that while the PV/T+ORC system does fulfill the purpose of increasing the electrical power generation both from the generator coupled to the thermal cycle and from the increase in the PV module efficiency due to its cooling. Thus, there is an increase the overall exergy efficiency of the system compared to uncoupled PV/T collectors.
机译:在这项工作中,讨论了结合了光伏面板和太阳能集热器以及低温热循环(例如有机朗肯循环)的混合太阳能模块的应用,其主要目的是增加每个可用区域的总发电量。这项工作将研究混合动力系统的热能和电力生产效率,由于其通过热传递至热循环的冷却而导致的光伏组件电转换效率的提高以及系统的总能效。在EES(工程方程求解器)软件的帮助下,将使用来自巴西圣保罗的Campinas的气候数据,基于热效率模型对稳态条件下的系统进行简化的仿真。研究表明,尽管PV / T + ORC系统确实实现了增加与热循环耦合的发电机以及由于冷却导致的PV组件效率提高的发电目的。因此,与未耦合的PV / T收集器相比,系统的总火用效率提高了。

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