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An investigation of the technoeconomic feasibility of solar domestic hot water heating for the Canadian housing stock

机译:加拿大住宅用太阳能家用热水的技术经济可行性研究

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摘要

This study evaluates the impact on energy consumption and GHG emissions as well as the technoeconomic feasibility of retrofitting solar domestic hot water (DHW) heating systems to all houses in the Canadian housing stock (CHS). The study was conducted using the Canadian Hybrid Residential End-Use Energy and GHG Emissions Model (CHREM). It was assumed that all houses that have a DHW system with a tank, and a roof facing south, south-west or south-east could be retrofitted with a solar DHW system. As to be expected, the energy and GHG emissions impact of retrofitting SDHW systems into the CHS is substantial. If all eligible existing DHW systems (30% of those existing in the CHS) were to be retrofitted with SDHW systems, the energy consumption and GHG emissions of the Canadian residential sector would be reduced by about 2%. This is equivalent to 22.7 PJ of end-use energy savings and 1 Mt of GHG emissions reduction, or 11.8% and 11.9%, respectively, of the current amounts associated with domestic hot water heating. The energy savings potential with SDHW systems in all provinces are similar, while the GHG emission reductions vary significantly due to the substantially different fuel mix used in different provinces. The economic feasibility results demonstrate the impact of installation and fuel costs, as well as interest and energy price escalation rates on payback period.
机译:这项研究评估了对能源消耗和温室气体排放的影响,以及在加拿大住房存量(CHS)中为所有房屋改造太阳能家用热水(DHW)加热系统的技术经济可行性。该研究使用加拿大混合住宅最终用途能源和温室气体排放模型(CHREM)进行。假定所有具有DHW系统和水箱且面向南,西南或东南的屋顶的房屋均可以采用太阳能DHW系统进行改造。可以预料,将SDHW系统改造为CHS会对能源和温室气体排放产生重大影响。如果所有符合条件的现有DHW系统(占CHS中现有系统的30%)都改用SDHW系统,则加拿大住宅部门的能耗和温室气体排放量将减少约2%。这相当于最终使用能源节省22.7 PJ,温室气体排放量减少1 Mt,分别相当于与家用热水供暖相关的当前金额的11.8%和11.9%。在所有省份,SDHW系统的节能潜力相似,而由于不同省份所使用的燃料组合大不相同,GHG的减排量也有很大差异。经济可行性结果证明了安装和燃料成本以及利息和能源价格上涨率对投资回收期的影响。

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