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Simulation and optimization of a hybrid unglazed solar photovoltaic- thermal collector and heat pump system with two storage tanks

机译:具有两个储罐的混合无釉太阳能光伏-集热器和热泵系统的仿真和优化

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Solar thermal energy systems combined with heat pumps are becoming popular solutions for covering space heating and domestic hot water demand in European Union households. There is a great potential for developing high performing systems by combining components in systems in new ways. This study focuses on the performance of a system consisting of heat pump, photovoltaic-thermal solar collector and two storage tanks. This system is proposed to potentially have better performance compared to air-to-liquid heat pump system while being less costly compared to a liquid-to-liquid heat pump system with ground sourced heat exchanger. The system was set up at the Technical University of Denmark in 2017, for providing domestic hot water. A simulation model of the system was created in the transient simulation software TRNSYS and the data from the experiment were used for its validation. The modulating heat pump was modelled via a function applied to the scale factor and the thermal mass of the heat pump was taken into account by including additional pipes around the heat pump. The performance of the system was assessed using selected key performance indicators. A parametric analysis was performed identifying component sizes that improved the system's performance. The improved system produced 55% more electricity, had 23% lower electric consumption and wasted 11% less heat by minimizing heat losses compared to the demonstration system. The improved system had a solar thermal fraction of 0.58, a solar electrical fraction of 1.51 and a renewable energy fraction of 0.75. The system was however oversized compared to the load applied to the system as it was built to cover only domestic hot water demand. For the system to be economically attractive it must cover a larger load.
机译:结合热泵的太阳能热能系统已成为满足欧盟家庭空间供暖和生活热水需求的流行解决方案。通过以新的方式组合系统中的组件,具有开发高性能系统的巨大潜力。这项研究的重点是由热泵,光伏热太阳能集热器和两个储罐组成的系统的性能。提出该系统与空气-液体热泵系统相比可能具有更好的性能,而与具有地面源热交换器的液体-液体热泵系统相比,成本更低。该系统于2017年在丹麦技术大学建立,用于提供生活热水。在瞬态仿真软件TRNSYS中创建了系统的仿真模型,并将实验数据用于验证。调制热泵通过应用于比例因子的函数进行建模,并通过在热泵周围包括其他管道来考虑热泵的热质量。使用选定的关键性能指标评估了系统的性能。进行了参数分析,确定了可以提高系统性能的组件尺寸。经过改进的系统与演示系统相比,通过使热量损失最小化,产生的电能增加了55%,电能消耗降低了23%,热量浪费减少了11%。改进的系统的太阳热分数为0.58,太阳电分数为1.51,可再生能源分数为0.75。但是,与系统所承受的负载相比,该系统尺寸过大,因为该系统仅用于满足生活热水需求。为了使该系统在经济上具有吸引力,它必须覆盖更大的负载。

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