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Development and optimization of an innovative HVAC system with integrated PVT and PCM thermal storage for a net-zero energy retrofitted house

机译:开发和优化具有集成式PVT和PCM储热系统的创新型HVAC系统,可实现零能耗的净装机房

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This paper describes a novel solar-assisted HVAC system developed for the Team UOW 'Illawarra Flame' Solar Decathlon house, the winner of the Solar Decathlon China 2013 competition. This HVAC system consists of an air-based photovoltaic-thermal (PVT) collector and a phase change material (PCM) thermal storage unit integrated with a reverse cycle heat pump, in a ducted system. The system was designed for operation during both winter and summer using daytime solar radiation and night-time sky radiative cooling, respectively. The PVT collector heats or cools fresh air from ambient and thereby provides heating or cooling either directly to the indoor space, or to the PCM storage unit. The heat stored in the PCM can be used later to condition the space or precondition the air entering the air handling unit. Analytical models for the PVC collector and PCM unit were developed in order to be easily implemented into a practical building management system (BMS). Experimental studies on the PVT collector and PCM unit were carried out and the data was used to validate the effectiveness of the models. It is shown that there is a good agreement between the model simulation results and experimental test data. A simple optimisation methodology of the operating modes that involve these components is also presented. (C) 2015 Elsevier BAT. All rights reserved.
机译:本文介绍了一种新型的太阳能辅助HVAC系统,该系统是为UOW“ Illawarra Flame”太阳能十项全能团队(2013年中国十项全能竞赛的获胜者)开发的。该HVAC系统在管道系统中由集成了反向循环热泵的空气基光伏热(PVT)收集器和相变材料(PCM)储热单元组成。该系统设计为分别在冬季和夏季使用白天的太阳辐射和夜间的天空辐射冷却进行操作。 PVT收集器从周围环境中加热或冷却新鲜空气,从而直接向室内空间或PCM存储单元提供加热或冷却。 PCM中存储的热量可稍后用于调节空间或对进入空气处理单元的空气进行预处理。开发了用于PVC收集器和PCM单元的分析模型,以便可以轻松地将其应用于实际的建筑物管理系统(BMS)。对PVT收集器和PCM单元进行了实验研究,并将数据用于验证模型的有效性。结果表明,模型仿真结果与实验测试数据吻合良好。还介绍了涉及这些组件的操作模式的简单优化方法。 (C)2015年Elsevier BAT。版权所有。

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