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Simulations of the energy performance of variable refrigerant flow system in representative operation modes for residential buildings in the hot summer and cold winter region in China

机译:夏热冬冷地区住宅建筑典型运行模式的可变制冷剂流量系统能量性能模拟。

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Predicting the energy performance of household variable refrigerant flow (VRF) systems in the hot summer and cold winter (HSCW) region in China accurately is particularly challenging due to the frequent defrost operations of the VRF systems during winter. Hence, an improved energy model was developed to determine the energy performance of household VRF systems, taking into account the defrost operations. The energy model was validated by experiments and the energy performance of the VRF system for typical residential buildings in Chongqing, Changsha, Nanjing, and Shanghai was determined based on representative operation modes (full-time-full-space and part-time-part-space modes). The results indicate that the efficiency of the VRF system increases as the outdoor temperature decreases. However, the efficiency of the VRF system decreases as the part-load ratio decreases, which leads to variations in the cooling seasonal performance factor for the representative operation modes and cities. The heating seasonal performance factor is not only influenced by the outdoor temperature and part-load ratio distribution, but also defrost operations. Compared with the part-time-part-space mode of C1 and C2, the annual energy consumption for the C4 mode performs lower from 26.3% to 51.7% for typical residential buildings in the four representative cities. (C) 2018 Elsevier B.V. All rights reserved.
机译:准确地预测中国在炎热的夏天和寒冷的冬天(HSCW)地区的家用可变制冷剂流量(VRF)系统的能源性能特别困难,因为冬季VRF系统经常除霜。因此,考虑到除霜操作,开发了一种改进的能源模型来确定家用VRF系统的能源性能。通过实验验证了该能量模型,并基于代表性的运行模式(全时全空和部分时分-部分-运行)确定了重庆,长沙,南京和上海的典型住宅建筑的VRF系统的能源性能。空间模式)。结果表明,VRF系统的效率随着室外温度的降低而增加。但是,随着部分负荷率的降低,VRF系统的效率会降低,这会导致代表性运营模式和城市的制冷季节性能系数发生变化。采暖季节性能因子不仅受室外温度和部分负荷比分布的影响,还受除霜操作的影响。与C1和C2的兼时时空模式相比,C4模式的年能耗在四个代表城市的典型住宅建筑中从26.3%降低到51.7%。 (C)2018 Elsevier B.V.保留所有权利。

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