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Experimental Investigation of Air-Source Heat Pump Heating System With a Novel Thermal Storage Refrigerant-Heated Panel

机译:具有新型热储存制冷剂加热面板的空气源热泵加热系统的实验研究

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摘要

In response to the triple crisis of energy-environment-economy (3Es), the air-source heat pump (ASHP) system is considered to be one of the most feasible candidates to upgrade the traditional high emission heating solutions. In this paper, a novel thermal storage refrigerant-heated panel (RHP) is proposed for the ASHP heating system. Experiments were conducted in a climate chamber to test the heating and defrosting performance of the system, the thermal performance of the RHP, the system energy efficiency, and the system economic feasibility. The results show that the heat flux of the RHP is as high as 625.5 W/m(2) at a condensation temperature of 40 degrees C and an outdoor air temperature of -7 degrees C. Meanwhile, the system is demonstrated to be reliable and competitive with efficient thermal stability in heating conditions and comfortable indoor thermal in defrosting conditions. The coefficient of performance (COP) ranges from 2.2 to 4.0 when the outdoor air temperature changes from -12 degrees C to 7 degrees C in the tests. Meanwhile, the initial capital cost and the total annual cost of the proposed system are 430 USD and 203.1 USD, respectively, which is competitive in the distracted heating systems.
机译:为了应对能源-环境-经济(3Es)的三重危机,空气源热泵(ASHP)系统被认为是升级传统高排放供暖解决方案的最可行方案之一。本文提出了一种用于ASHP加热系统的新型蓄冷制冷剂加热板(RHP)。在气候室中进行了实验,以测试系统的加热和除霜性能、RHP的热性能、系统能效和系统经济可行性。结果表明,在冷凝温度为40℃、室外空气温度为-7℃时,RHP的热通量高达625.5 W/m(2)。同时,该系统在加热条件下具有高效的热稳定性,在除霜条件下具有舒适的室内热稳定性,具有可靠性和竞争力。在试验中,当室外空气温度从-12摄氏度到7摄氏度变化时,性能系数(COP)的范围为2.2到4.0。同时,拟建系统的初始资本成本和年总成本分别为430美元和203.1美元,在分散供暖系统中具有竞争力。

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