太阳能光伏/热(PVT)技术集热器和地源热泵系统中的自由冷却系统

Christopher Pourier, Francisco Beltrán, Nelson Sommerfeldt
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引用次数: 0

摘要

地源热泵(GSHP)系统为建筑物脱碳提供了低碳供暖和制冷解决方案。随着全球气温的升高,建筑物的制冷需求也将增加,即使在瑞典等因气候寒冷而历来不使用制冷系统的地区也是如此。自由冷却(FC)与 GSHPs 的结合似乎是满足日益增长的冷却需求的一种自然方式,因为在夏季从建筑物中提取的热量可以注入地下,从而有可能使井田再生并提高热泵性能。然而,通常与 GSHP 系统集成用于井眼再生的技术是光伏/集热器。本研究调查了瑞典斯德哥尔摩一栋多户建筑中带有自由冷却功能的地源热泵系统的性能,以及光伏/集热器存在时对系统自由冷却能力的干扰。结果表明,光伏集热器和 FC 的集成不仅能保持冷却供应,还能提高热泵性能,同时减少钻孔长度和占地面积要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Solar photovoltaic/thermal (PVT) technology collectors and free cooling in ground source heat pump systems

Ground source heat pump (GSHP) systems offer a low carbon heating and cooling solution for the decarbonization of buildings. As global temperatures rise, the cooling requirements of buildings will grow, even in regions where cooling systems have been historically uncommon due to their colder climate, such as Sweden. The combination of free cooling (FC) with GSHPs seems like a natural way to meet the increasing cooling needs, since the heat extracted from the building during the summer months can be injected into the ground to potentially regenerate the borehole field and enhance heat pump performance. However, a technology that is generally integrated with GSHP systems for borehole regeneration are photovoltaic/thermal collectors. This study investigates the performance of a ground source heat pump system with free cooling for a multi-family building in Stockholm, Sweden, and the interference on the free cooling capabilities of the system when photovoltaic/thermal collectors are present. The results demonstrate that the integration of PVT and FC not only maintains the cooling supply but also enhances heat pump performance, all the while reducing borehole length and land area requirements.

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