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Dynamic simulation of a novel high-temperature solar trigeneration system based on concentrating photovoltaic/thermal collectors

机译:基于聚光光伏/集热器的新型高温太阳能三代发电系统的动态仿真

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摘要

The paper is focused on the dynamic simulation of a Photovoltaic/Thermal collector (PVT) integrated in a high-temperature Solar Heating and Cooling (SHC) system. The system is based on the following main components: concentrating parabolic PVT (photovoltaic thermal) collectors, a double-stage LiBr-H2O absorption chiller, storage tanks, auxiliary heaters, balance of plant devices. The PVT is made-up by a parabolic dish concentrator and a triple-junction receiver. The polygeneration system provides electricity, space heating and cooling and domestic hot water for a given building, whose simulation is also included in the model. In particular, PVT produces electric energy, which is in part consumed by the building loads (lights and equipments), in part by the system parasitic loads, whereas the eventual excess is sold to the public grid. Simultaneously, the PVT provides the heat required to drive the absorption chiller. The system was simulated by means of a zero-dimensional transient model, that allows the evaluation of temperature profiles and also heat/electrical energy flows for whatever period of the year. It is also possible to evaluate the overall energetic and economic performance on whatever time basis (day, week, month, year, etc.). The economic results show that the system under investigation can be profitable, if a proper funding policy is available. The paper also includes an extensive parametric analysis aiming at evaluating the set of design and operating parameters (solar field area, tank volumes, set point temperatures, etc.) that maximize the energetic and/or economic performance of the system.
机译:本文的重点是集成在高温太阳能加热和冷却(SHC)系统中的光伏/热收集器(PVT)的动态仿真。该系统基于以下主要组件:集中抛物线PVT(光伏热)收集器,双级LiBr-H2O吸收式制冷机,储罐,辅助加热器,工厂设备平衡。 PVT由抛物面碟形浓缩器和三结接收器组成。多联产系统为给定的建筑物提供电力,空间供暖和制冷以及生活热水,其仿真也包括在模型中。特别是,PVT产生电能,该电能部分地由建筑负载(照明设备)消耗,部分地由系统寄生负载消耗,而最终的多余部分则出售给公共电网。同时,PVT提供驱动吸收式制冷机所需的热量。该系统是通过零维瞬态模型进行仿真的,该模型可以评估一年中任何时期的温度曲线以及热/电能流。也可以在任何时间基础(天,周,月,年等)上评估总体的能源和经济绩效。经济结果表明,如果有适当的资助政策,则所调查的系统可以盈利。本文还包括广泛的参数分析,旨在评估使系统的能量和/或经济性能最大化的一组设计和操作参数(太阳能场面积,储罐容积,设定点温度等)。

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