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Performance characteristics of a simultaneous cooling and heating multi-heat pump at partial load conditions

机译:在部分负载条件下同时冷却和加热的多热泵的性能特征

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摘要

A simultaneous cooling and heating multi-heat pump can improve thermal comfort and energy efficiency through heat recovery at partial load conditions. The performance of a simultaneous heating and cooling multi-heat pump with four indoor units was measured by varying the compressor speed, EEV opening, and fan speed at full and partial load conditions in five operating modes. In the cooling-only and heating-only modes, the heating and cooling capacities were properly controlled by varying the compressor speed. However, in the cooling-main and heating-main modes under partial load conditions, a large imbalance between the cooling and heating capacities was observed even though the compressor speed was optimized. This capacity imbalance under partial load conditions was optimized by adjusting the EEV openings in the mode change unit and the outdoor unit. In addition, in the entire-heat recovery mode, rating compressor speed ratios were proposed under the full and partial load conditions.
机译:同时制冷和加热的多热泵可通过在部分负载条件下进行热回收来提高热舒适性和能源效率。在五个操作模式下,通过在满负荷和部分负荷条件下改变压缩机速度,EEV开度和风扇速度,来测量具有四个室内机的同时供热和制冷多热泵的性能。在仅制冷和仅加热模式下,通过改变压缩机转速可以适当地控制加热和制冷能力。然而,在部分负载条件下的制冷主模式和供热主模式下,即使优化了压缩机速度,也观察到了制冷和制热能力之间的巨大不平衡。通过调节模式转换单元和室外单元中的EEV开口,可以优化部分负载条件下的容量失衡。此外,在全热回收模式下,建议在满负荷和部分负荷条件下使用额定压缩机速比。

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