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Experimental performance analysis of a multiple-source and multiple-use heat pump system: winter field experiment and heating operation performance evaluation

机译:多源多用途热泵系统的实验性能分析:冬季野外实验和供热运行性能评估

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We herein report the development of a distributed heat pump system that can utilize a variety of renewable energy sources to meet different building heating and cooling demands (i.e., a multiple source and multiple use heat pump system, MMHP). In this system, a water circulating loop is used to connect ground heat exchangers, a unique sky-source heat pump, and various heat pumps for heating and cooling purposes to form a thermal network within a building. This distribution increases the flexibility of the system and allows an improved matching of supply and demand. To evaluate the system performance, an experimental house was constructed, and a winter field experiment was conducted. We found that the reported heat pump for floor heating achieved a stable operation with a high coefficient of performance of ~11.5, while the heat collecting operation performance of the sky-source heat pump varied significantly depending on the amount of solar radiation and the outside air temperature. Finally, since the sky-source heat pump contributes to an improvement in the whole system performance, it appears that there is still room for improved regarding the whole system performance by adjusting the operating and control strategy.
机译:我们在此报告了分布式热泵系统的开发,该系统可以利用各种可再生能源来满足不同的建筑物供热和制冷需求(即多源多用途热泵系统MMHP)。在该系统中,水循环回路用于连接地面热交换器,独特的天空源热泵以及用于加热和冷却目的的各种热泵,以在建筑物内形成热网络。这种分布增加了系统的灵活性,并允许改进的供需匹配。为了评估系统性能,建造了一个实验房屋,并进行了冬季野外实验。我们发现报告的地板采暖用热泵实现了稳定的运行,性能系数高达〜11.5,而天源式热泵的集热运行性能则取决于太阳辐射量和外部空气的变化。温度。最后,由于天源式热泵有助于改善整个系统的性能,因此似乎可以通过调整操作和控制策略来改善整个系统的性能。

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