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Energy and comfort performance analysis of monitored thermally activated building systems combined with geothermal heat pumps

机译:结合地热热泵的受监控热激活建筑系统的能量和舒适性能分析

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摘要

The combination of geothermal heat pumps (GEO HPs) and thermally activated building systems (TABS), that allow both low temperature heating and high temperature cooling, could yield primary energy savings of around 20- 71% in comparison with conventional heating/cooling systems. However, the potential energy savings are rarely reached in practice due to bad integration of the different subsystems and inefficient control. The present paper presents the analysis of two monitoring campaigns by stressing the influence of relevant parameters such as the performance of components (heat pump, ground heat exchangers, TABS, etc.), building characteristics and the implemented control strategies. The buildings have been monitored and analyzed in the frame of the WKSP-project realized by Institute of Building Services and Energy Design (IGS) at Technical University of Braunschweig. The results show good performance of ground coupled heat pump with seasonal COP up to around 5. Moreover, the use of ground heat exchangers to perform free chilling allows seasonal EER up to 20. Furthermore, the control strategies implemented in the different buildings are quite different. It is also shown that this system can lead to a running cost reduction up to 50% compared to conventional systems and that CO2 emissions can be reduced by 40%.
机译:地热热泵(GEO HP)和热激活建筑系统(TABS)的组合,允许进行低温加热和高温冷却,与传统的加热/冷却系统相比,可节省约20-71%的一次能源。但是,由于不同子系统的集成不良以及控制效率低下,实际上很少能实现潜在的节能效果。本文通过强调相关参数(例如部件的性能(热泵,地面热交换器,TABS等),建筑特性和已实施的控制策略)的影响,对两个监视活动进行了分析。在不伦瑞克工业大学建筑服务与能源设计学院(IGS)实现的WKSP项目框架中对建筑物进行了监视和分析。结果表明,季节性COP高达5左右的地面耦合热泵具有良好的性能。此外,使用地面热交换器进行免费制冷可使季节性EER高达20。此外,在不同建筑物中实施的控制策略也大不相同。 。还表明,与传统系统相比,该系统可以将运行成本降低多达50%,并且可以将CO2排放量降低40%。

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