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Assessment and parametric analysis of solar trigeneration system integrating photovoltaic thermal collectors with thermal energy storage under time-of-use electricity pricing

机译:在使用电力定价下将光伏热收集器集成光伏热量收集器的太阳能三极化系统的评估与参数分析

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The solar trigeneration system based on coupling photovoltaic thermal (PVT) collectors with an absorption-subcooled compression hybrid cooling configuration has the potential for enhancing solar energy utilization in buildings. Considering time-of-use electricity pricing, the availability of solar cooling often does not coincide with on-peak periods during which electricity prices are high. To benefit from time-of-use pricing for greater economic profitability, sensible heat thermal storage is potential options. However, changeable storage tank temperature affects not only solar cooling capacity but also the electrical output of PVT collectors. Thus, in this work, three operation schemes (i.e., a conventional scheme, heat energy storage and cool energy storage schemes) are compared, and the effect of key design parameters on system performance is analyzed. Models for different system layouts and a conventional photovoltaic (PV-only) system are developed by programming with MATLAB. Annual (8760-hour) simulations are performed based on a case study for a high-rise hotel in sub-tropical cities. The results for Guangzhou show that the system layout, integrating cool energy storage and glazed PVT collectors with low-emissivity coatings, achieves the highest total electricity cost saving, which is 16% higher than that of the PV-only system. Its total solar energy utilization efficiency is 0.321, which is 2.4 times that of the PV-only system. The novelty of this work is that it provides an appropriate energy storage strategy and the design guidelines of key parameters for PVT-based solar trigeneration systems. This work is helpful for PVT-based solar trigeneration systems to improve operating cost savings under time-of-use electricity pricing.
机译:基于耦合光伏热(PVT)收集器的太阳能三通系统具有吸收 - 过冷压缩式混合冷却构造具有提高建筑物中太阳能利用的可能性。考虑到使用时间的电力定价,太阳能冷却的可用性通常与高峰期不一致,电价高。为了受益于使用时间的定价,以获得更大的经济盈利能力,可明智的热量储存是潜在的选择。然而,可变的储罐温度不仅影响太阳能冷却能力,而且影响PVT收集器的电气输出。因此,在这项工作中,比较了三个操作方案(即,传统方案,热能存储和冷却能量存储方案),分析了关键设计参数对系统性能的影响。通过使用MATLAB编程开发了不同系统布局和传统光伏(仅限PV)系统的模型。基于亚热带城市的高层酒店的案例研究来进行年度(8760小时)模拟。广州的结果表明,系统布局,将酷能量储存和玻璃PVT收集器集成,具有低发射率涂层,实现了最高的总电力成本节约,比仅PV系统的储蓄量高16%。其总太阳能利用效率为0.321,即PV系统的2.4倍。这项工作的新颖性是它提供了适当的能量存储策略和基于PVT的太阳能三极化系统的关键参数的设计指导。这项工作有助于PVT的太阳能三极化系统,以提高在使用时间的电力定价下的运营成本节省。

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