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Parallel vs series configurations in combined solar and heat pump systems: A control system analysis

机译:组合式太阳能和热泵系统中的平行VS系列配置:控制系统分析

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This paper presents the modelling of two Solar Heat Pump systems, one for Domestic Hot Water and other one for Space Heating in two different configurations. Both system's configurations can commute between parallel and series operation. The Configuration "A" uses a heat pump with two evaporators, allowing to work as an air source Heat Pump or as a water source Heat Pump. The Configuration "B" uses a heat exchanger to preheat the air entering to an air-to-water Heat Pump. These configurations are simulated in TRNSYS 17 for evaluating their performance in three Chilean cities: Santiago, Concepcion and Puerto Montt. The control system applies a switching criterion between operation modes based primarily on the available solar irradiation. According to the results, the individual performance figures of the Heat Pump and of the Solar Collectors increase. Nonetheless, the results show that the Seasonal Performance Factor of the overall system decreases when it is switched from parallel to series. In the case of space heating, the Configuration A using evacuated tubes collectors shows a decrease of the Seasonal Performance Factor from 5.85 to 4.78 in Santiago, 5.35 to 4.30 for Concepcion and 4.70 to 3.87 for Puerto Montt. In all case studies, unglazed collectors applications show a maximum SPF decrease of 0.04 and a maximum increase of 0.01. The results obtained can be influenced by the applied switching criterion used in this study, which does not force the Solar Collectors to increase their operational time by cooling them with the Heat Pump. Then, for the case studies, the non-inclusion of additional solar collector's operational time leads to decrease the system performance.
机译:本文介绍了两个太阳能热泵系统的建模,一个用于国内热水等,用于两种不同配置的空间加热。两个系统的配置都可以在并行和串联操作之间进行通勤。配置“a”使用具有两个蒸发器的热泵,允许作为空气源热泵或水源热泵用作。配置“B”使用热交换器预热进入空气热泵的空气。这些配置在TRNSYS 17中模拟,用于评估他们在三个智利城市的表现:圣地亚哥,康佩翁和波多黎特。控制系统应用于主要基于可用的太阳照射的操作模式之间的切换标准。根据结果​​,热泵和太阳能收集器的各个性能图增加。尽管如此,结果表明,当其从平行于串联切换时,整个系统的季节性性能因数降低。在空间加热的情况下,使用疏散管收集器的配置显示了Santiago 5.85至4.78的季节性性能因数降低,5.35至4.30,康塞普赛和4.70至3.87。在所有案例研究中,无氮化的收集器应用显示最大SPF减小0.04,最大增加0.01。所获得的结果可以受到本研究中使用的应用切换标准的影响,这不会强制太阳能收集器通过用热泵冷却它们来增加其工作时间。然后,对于案例研究,不包含额外的太阳能收集器的操作时间导致系统性能降低。

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