Simulation and analysis of three, solar assisted, ground source heat pump systems

Georgios Aspetakis, N. Andritsos
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Abstract

The use of Ground Source Heat Pump (GSHP) systems is promising in reducing the energy consumption in the households and services sector, which accounts for almost 40% of the total energy consumption in Europe and in Northern America. There is an increasing interest in combining such earth energy systems with solar energy. In this study, three Solar Assisted Ground Source Heat Pump configurations comprised of Flat-Plate (FPC), Photovoltaic (PV) and hybrid Photovoltaic/Thermal (PV/T) collectors are investigated aiming at upgrading an existing GSHP system installed in a university building complex at in Volos, Greece. These systems were simulated with the dynamic system simulation tool TRNSYS and were assessed on energy performance and on an economic and an environmental basis. Results of the analysis showed that the PV system is the best option due to its substantial energy savings and to the lower cost compared to the PV/T system.
三、太阳能辅助地源热泵系统的仿真与分析
地源热泵(GSHP)系统的使用有望减少家庭和服务部门的能源消耗,这几乎占欧洲和北美总能源消耗的40%。人们对将这种地球能源系统与太阳能结合起来越来越感兴趣。在这项研究中,研究了三种太阳能辅助地源热泵配置,包括平板(FPC),光伏(PV)和混合光伏/热(PV/T)集热器,旨在升级安装在希腊Volos大学建筑群中的现有地源热泵系统。这些系统通过动态系统仿真工具TRNSYS进行了模拟,并在能源性能、经济和环境基础上进行了评估。分析结果表明,光伏系统是最佳选择,因为它节省了大量的能源,并且与PV/T系统相比成本更低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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