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Study on Fuzzy Control for Air-To-Water Heat Pumps Connected to a Residential Floor Heating System

机译:居住地板加热系统的空对水热泵模糊控制研究

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Reducing the supplied water temperature of the air-to-water heat pump to meet the building heat demand can greatly improve the efficiency of the heat pump unit and give full play to the advantages of energy saving and comfort of the floor radiant heating system with an air-to-water heat pump. Based on the variation of ambient temperature and ambient temperature, the domain of fuzzy control is optimized by particle swarm optimization (PSO), and the optimal fuzzy control table is established to adjust the supplied water temperature of the air-to-water heat pump. A transient simulation model of floor radiant heating system for a typical 100?m2 building in China cold regions was developed by using TRNSYS software, and this heating system is simulated by the fuzzy control variable supplied water temperature and the conventional 45°C supplied water control in the whole heating season. The simulation results show that the system energy consumption is saved by 15.9% and SCOP increased by 18.9% by using this fuzzy control compared with the conventional 45°C supplied water control in the whole heating season under the premise of ensuring stable room temperature. Comparing conventional 45°C supplied water control, the fuzzy control can reduce CO2 emissions by 4.3?kg/m2, 4.7?kg/m2, 5.6?kg/m2, 5.2?kg/m2, and 4.9?kg/m2 in Zhengzhou, Qingdao, Beijing, Taiyuan, and Zhangjiakou, respectively.
机译:减少空气热泵的供水温度以满足建筑物热量需求,可以大大提高热泵单元的效率,充分发挥地板辐射加热系统的节能和舒适的优点空气 - 水热泵。基于环境温度和环境温度的变化,通过粒子群优化(PSO)优化模糊控制领域,建立了最佳模糊控制表以调节空气热泵的供水温度。通过使用Trnsys软件开发了一种典型的100?M2建筑的典型100?M2建筑的瞬态仿真模型,采用TRNSYS软件开发了这种加热系统,采用模糊控制变量供水温度和传统的45°C供应水控制在整个加热季节。仿真结果表明,通过使用该模糊控制在整个加热季节中的稳定室温下的常规45°C供应水控制相比,系统能量消耗量可节省15.9%,SCOP增加18.9%。比较常规的45°C供应水控制,模糊控制可以减少4.3 kg / m2,4.7 kg / m2,5.6?kg / m2,5.2?kg / m2,4.9?kg / m2,青岛,北京,太原和张家口分别。

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