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Higher ground source heat pump COP in a residential building through the use of solar thermal collectors

机译:通过使用太阳能集热器提高住宅建筑中的地源热泵COP

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This article investigates the feasibility of achieving higher performance from ground-source heat-pumps (GSHP) in space heating mode through the use of solar thermal collectors. A novel simulation tool for solar-assisted ground-source heat-pumps (SGSHP) is presented with an analysis of the influence of solar collectors on the improvement of heat pump performance. Solar radiation and climate temperature data of 19 European cities were used to perform simulations of SGSHP and GSHP systems considering a typical residential house. Overall performance coefficients (COPsys) varied from northern to southern locations between 4.4 and 5.8 for SGSHP and between 4.3 and 5.1 for GSHP. Results show that solar collectors coupling has more impact on performance improvement in regions that benefit from higher irradiance. However, greater running cost savings are achieved in milder climate conditions. Both heat-pump systems are able to effectively contribute to carbon footprint reductions for residential buildings, especially in countries where fossil fuels are the primary source of electricity generation. SGSHP payback periods are found between 8.5 and 23 years from northern to southern localities, making such heating system an economic heating option. SGSHPs are best suited for high irradiance and cool climate locations such as the mountainous regions in southern Europe. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文研究了通过使用太阳能集热器在空间加热模式下从地源热泵(GSHP)获得更高性能的可行性。提出了一种新颖的太阳能辅助地源热泵仿真工具(SGSHP),并分析了太阳能收集器对改善热泵性能的影响。考虑到典型的住宅,使用了19个欧洲城市的太阳辐射和气候温度数据进行SGSHP和GSHP系统的模拟。从北部到南部,总体绩效系数(COPsys)对于SGSHP为4.4到5.8,对于GSHP为4.3到5.1。结果表明,在受益于较高辐照度的区域中,太阳能收集器的耦合对性能改善的影响更大。但是,在温和的气候条件下可以节省更多的运行成本。两种热泵系统都能够有效地减少住宅建筑的碳足迹,特别是在化石燃料是主要发电来源的国家。从北部到南部,SGSHP的投资回收期为8.5至23年,这使得这种供暖系统成为经济的供暖选择。 SGSHP最适合高辐照度和凉爽气候的地区,例如欧洲南部的山区。 (C)2015 Elsevier Ltd.保留所有权利。

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