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首页> 外文期刊>Science and Technology for the Built Environment >Techno-economic analysis of air-source heat pump (ASHP) technology for single-detached home heating applications in Canada
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Techno-economic analysis of air-source heat pump (ASHP) technology for single-detached home heating applications in Canada

机译:加拿大单拆家用加热应用的空气源热泵(ASHP)技术的技术经济分析

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摘要

The air-source heat pump (ASHP) is a popular system that does not see much use in cold-climates despite its high potential in low carbon footprint. This study was designed to evaluate the techno-economic feasibility of its application to single-detached homes in Canada. First, a set of support vector regression (SVR) models was developed by a housing database for prediction of the exposed surface areas of homes in five Canadian cities: Vancouver, Toronto, Montreal, Edmonton, and Yellowknife. The predicted areas were then used to estimate the heat demands of all homes. As a result, the technical evaluation was conducted by comparison of the heat loss rate with the heat supply rate of ASHPs. Annual energy consumption was calculated using a bin method for furnace-alone and furnace/ASHP hybrid systems. Seasonal operating costs and greenhouse gases (GHG) emissions were estimated by utility costs and emissions factors for each city. Our findings show that Vancouver, Toronto, and Montreal are technically feasible to adopt the ASHP technology for economic and low GHG emission benefits. Although currently Edmonton and Yellowknife could not theoretically gain ASHP's benefits, the ASHP technology is still a promising technology to be implemented in the future if renewable energy infrastructures are established.
机译:空气源热泵(ASHP)是一种流行的系统,尽管其在低碳足迹的潜力很高,但在寒冷中没有看到很多使用。本研究旨在评估其在加拿大单拆别墅的应用的技术经济可行性。首先,通过住房数据库开发了一组支持向量回归(SVR)模型,以预测五个加拿大城市的房屋的暴露表面区域:温哥华,多伦多,蒙特利尔,埃德蒙顿和耶鲁克赛。然后使用预测的区域来估计所有房屋的热需求。结果,通过比较ashps的热量损失率的热量损失率进行了技术评价。使用炉内和炉/ ASHP混合系统的垃圾箱来计算年度能耗。每款城市的公用事业费用和排放因素估算季节性运营成本和温室气体(GHG)排放。我们的研究结果表明,温哥华,多伦多和蒙特利尔在技术上是采用ASHP技术的经济和低气息排放效益。虽然目前Edmonton和Yellowknife无法理论上无法获得ASHP的好处,但如果建立可再生能源基础设施,ASHP技术仍然是未来实施的有希望的技术。

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