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Numerical simulation of solar assisted ground-source heat pump heating system with latent heat energy storage in severely cold area

机译:严寒地区具有潜热储能的太阳能辅助地源热泵供暖系统的数值模拟

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摘要

Solar assisted ground-source heat pump (SAGSHP) heating system with latent heat energy storage tank (LHEST) is investigated. The mathematical model of the system is developed, and the transient numerical simulation is carried out in terms of this model. The operation characteristic of the heating system is analyzed during the heating period in Harbin (N45.75 degrees, E126.77 degrees). From the results of the simulation, the average coefficient of performance (COP) of the heating system is 3.28 in heating period. In the initial and latter heating period, the COP of the heating system is higher, and the highest value is 5.95, because the system can be operated without heat pump. During the middle heating period the COP of the heating system and the operation stability of the system are improved due to solar energy and soil alternately or together as the heat source of heat pump. LHEST is a very important role in operation of the system. The system can be operated more flexibly, effectively, and stably by the charge and discharge heat of LHEST, and the effect becomes especially obvious in the initial and latter heating period. (C) 2007 Elsevier Ltd. All rights reserved.
机译:研究了带有潜热储能罐(LHEST)的太阳能辅助地源热泵(SAGSHP)加热系统。开发了系统的数学模型,并根据该模型进行了瞬态数值模拟。分析了哈尔滨市供暖期间(N45.75度,E126.77度)供暖系统的运行特性。从仿真结果可以看出,供暖系统在供暖期间的平均性能系数(COP)为3.28。在最初和之后的加热阶段,加热系统的COP较高,最大值为5.95,因为该系统无需热泵即可运行。在中间加热期间,由于太阳能和土壤交替或一起作为热泵的热源,提高了加热系统的COP和系统的运行稳定性。 LHEST在系统运行中扮演着非常重要的角色。通过LHEST的充,放热,可以更加灵活,有效,稳定地运行该系统,在初次加热和后期加热期间效果尤为明显。 (C)2007 Elsevier Ltd.保留所有权利。

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