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Techno-economic analysis of an exhaust air heat pump system assisted by unglazed transpired solar collectors in a Swedish residential cluster

机译:瑞典住宅集群中的乌布扎德转运太阳能收集器辅助的排气热泵系统技术经济分析

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摘要

Solar heating technologies hold a significant potential to supplement or replace the fossil fuel-driven heating systems in residential and industrial applications. This paper presents a techno-economic study aiming to assess the use of Unglazed Transpired Solar Collectors (UTSC) coupled with an energy system assisted by Exhaust Air Heat Pump (EAHP) in cold climates applied to a residential building cluster. The performance of the system and its components is assessed for different sizes of solar collector field. In addition, a rule-based algorithm is developed to manage the airflow into the UTSC, and a comparative analysis is carried out with conventional flow control. The existing EAHP assisted energy system of a multifamily building cluster in Sweden is modelled by using a simulation software TRNSYS, and the effects of the UTSCs integration on the performances of the energy system are evaluated. Results show that the integration of UTSCs has a small but positive impact on the overall system performance. Moreover, the developed control based on the variation of the collector airflow rate for UTSC is an effective control strategy to increase the seasonal performance factor of the overall system and to maximize the savings.
机译:太阳能加热技术持有巨大的潜力,可以补充或更换住宅和工业应用中的化石燃料驱动的加热系统。本文提出了一种技术经济研究,旨在评估使用寒冷气候中的寒冷气候中的排气热泵(EAHP)辅助的无铅转运太阳能收集器(UTSC)的使用。为不同尺寸的太阳能电池领域评估了系统及其组件的性能。另外,开发了一种基于规则的算法来管理将气流进入UTSC,并且通过传统的流量控制进行比较分析。通过使用模拟软件TRNSYS建模瑞典的多型建筑集群的现有EAHP辅助能量系统,评估了UTSCS对能量系统的性能的积分的影响。结果表明,UTSCS的整合对整体系统性能有小而积极的影响。此外,基于UTSC的集电器气流率变化的显影控制是增加整个系统的季节性性能因子的有效控制策略,并最大限度地提高节省。

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