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Design and dynamic simulation of a novel solar trigeneration system based on hybrid photovoltaic/thermal collectors (PVT)

机译:基于光伏/热电混合的新型太阳能三联发电系统的设计和动态仿真

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摘要

In this paper, a Solar Heating and Cooling (SHC) system including photovoltaic/thermal (PVT) collectors is considered, implementing a novel polygeneration system producing electricity, space heating and cooling and domestic hot water. In particular, PVT collectors operating up to 80 ℃ are considered. A case study for a university building located in Naples (Italy) is developed and discussed. The system is mainly composed by: PVT collectors, a single-stage LiBr-H_2O absorption chiller, storage tanks and auxiliary heaters. The system also includes additional balance-of-plant devices: heat exchangers, pumps, controllers, cooling tower, etc. The PVT produces electricity which is utilized in part by the building lights and equipments and in part by the system parasitic loads; the rest is eventually sold to the grid. Simultaneously, the PVT system provides the heat required to drive the absorption chiller. The system performance is analyzed from both energetic and economic points of view by means of a zero-dimensional transient simulation model, developed with TRNSYS. The economic results show that the system under investigation can be profitable, provided that an appropriate funding policy is available. In addition, the overall energetic and economic results are comparable to those reported in literature for similar systems.
机译:在本文中,考虑了一个包括光伏/热能(PVT)收集器的太阳能加热和冷却(SHC)系统,该系统实现了一种新型的多联产系统,该系统可发电,空间供热和制冷以及生活用水。特别要考虑的是在80℃以下工作的PVT收集器。开发并讨论了位于那不勒斯(意大利)的一所大学大楼的案例研究。该系统主要由:PVT收集器,单级LiBr-H_2O吸收式制冷机,储罐和辅助加热器组成。该系统还包括其他工厂平衡设备:热交换器,泵,控制器,冷却塔等。PVT产生的电能部分被建筑物的照明设备使用,部分被系统的寄生负载利用;其余的最终出售给电网。同时,PVT系统提供驱动吸收式制冷机所需的热量。利用TRNSYS开发的零维瞬态仿真模型从能量和经济角度分析了系统性能。经济结果表明,只要有适当的资金政策,被调查系统可能会有利可图。此外,总体的能量和经济结果与类似系统文献中的结果相当。

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