新型太阳能辅助供暖系统的研究

IF 1.5 4区 工程技术 Q3 CONSTRUCTION & BUILDING TECHNOLOGY Building Services Engineering Research & Technology Pub Date : 2021-04-12 DOI:10.1177/01436244211008689
G. Davies, J. Blower, R. Hall, G. Maidment
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引用次数: 1

摘要

使用计算机建模研究了在一系列配置中使用低发射率(低ε)蒸发太阳能收集器(TSC)与热泵相结合时的能源、二氧化碳当量(CO2e)和成本节约潜力。低εTSS由金属太阳能集电板组成,集电板具有光谱敏感的表面,并穿孔。环境空气通过孔吸入,并通过太阳能集电板的对流加热,使空气温度升高25 K.加热后的空气可用于例如空间供暖或建筑物中的预热水。所开发的模型已用于比较小型和大型建筑中不同位置的低εTSC/热泵供暖系统的性能。模型结果表明,与单独使用排气热泵相比,使用低εTSS与排气热泵相结合可节省高达16.4%的能源、二氧化碳当量和成本。实际应用:如果英国要实现到2050年实现温室气体净零排放的目标,就必须采用低碳或零碳供暖技术。所研究的新型低发射率蒸发太阳能收集器装置可以对此做出贡献。其优点包括:(一)利用太阳辐射;(ii)易于与现有供暖系统(例如热泵)集成;(iii)显著的能源、二氧化碳排放和成本节约;(iv)低成本装置;(v) 最小能量输入,即一个小风扇;(vi)可改装为现有建筑物;(vii)其益处适用于所有(广泛的)测试地点。
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Study of novel solar assisted heating system
The potential for energy, carbon dioxide equivalent (CO2e) and cost savings when using low emissivity (low-ε) transpired solar collectors (TSCs), combined with heat pumps in a range of configurations, has been investigated using computer modelling. Low-ε TSCs consist of metal solar collector plates with a spectrally sensitive surface, perforated with holes. Ambient air is drawn through the holes and heated by convection from the solar collector plate, increasing the air temperature by up to 25 K. The heated air can be used for e.g. space heating, or pre-heating water in buildings. The models developed have been used to compare the performance of low-ε TSC/heat pump heating systems in small and large buildings, at a range of locations. The model results showed savings in energy, CO2e and costs of up to 16.4% when using low-ε TSCs combined with an exhaust air heat pump compared with using the exhaust air heat pump alone. Practical application: If the UK is to meet its target of reaching net zero greenhouse gas emissions by 2050, it will be necessary to adopt low or zero carbon heating technologies. The novel low emissivity transpired solar collector device investigated can contribute to this. Its advantages include: (i) utilising solar radiation; (ii) readily integrated with existing heating systems e.g. heat pumps; (iii) significant energy, CO2e emissions and cost savings; (iv) low cost device; (v) minimal energy input i.e. one small fan; (vi) can be retrofitted to existing buildings; (vii) its benefits were applicable at all of the (wide range of) locations tested.
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来源期刊
Building Services Engineering Research & Technology
Building Services Engineering Research & Technology 工程技术-结构与建筑技术
CiteScore
4.30
自引率
5.90%
发文量
38
审稿时长
>12 weeks
期刊介绍: Building Services Engineering Research & Technology is one of the foremost, international peer reviewed journals that publishes the highest quality original research relevant to today’s Built Environment. Published in conjunction with CIBSE, this impressive journal reports on the latest research providing you with an invaluable guide to recent developments in the field.
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