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Assessing the nearly zero-energy building gap in university campuses with a feature extraction methodology applied to a case study in Spain

机译:使用特征提取方法评估大学校园中几乎零能耗的建筑缺口,并应用于西班牙的案例研究

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Public universities face the challenge of retrofitting the actual campus buildings into nearly zero-energy buildings (NZEB). In this study, a novel methodology for evaluating historical energy use and renewable energy production for all the buildings of a university, including hourly, daily and monthly data assessments is presented. This analysis is useful as a baseline for comparisons with future energy retrofits and enables determining the current gap between actual energy indicators at building and campus levels and the established limits for NZEB non-residential buildings in the European Union. The methodology is applied to a case study at the University of Lleida, a typical average-size university in Spain. Results show a wide variation in energy use among campus buildings, ranging between 50 and 470?kWh/m_(2)?year. Constant or slightly increasing energy use and decreasing trends in renewable energy generation are observed. The daily electricity profiles have shown similar patterns among buildings and substantial potential energy savings during unoccupied periods. In the NZEB analysis, the average non-renewable primary energy use is about 4 times higher than the maximum estimated Spanish threshold range of 45–55?kWh/m_(2)?year. Deep energy renovation strategies are, thus, needed for universities to meet EU NZEB targets.
机译:公立大学面临着将实际的校园建筑改造成几乎零能耗的建筑的挑战。在这项研究中,提出了一种用于评估大学所有建筑物的历史能源使用和可再生能源生产的新颖方法,包括每小时,每天和每月的数据评估。该分析可作为与未来能源改造进行比较的基准,并且可以确定建筑物和校园级别的实际能源指标与欧盟NZEB非住宅建筑物的既定限制之间的当前差距。该方法应用于西班牙典型的中等规模大学莱里达大学的案例研究。结果表明,校园建筑之间的能源使用差异很大,范围在50至470?kWh / m_(2)?年之间。观察到恒定或略有增加的能源使用以及可再生能源发电的减少趋势。每天的电力分布图显示了建筑物之间的相似模式,并且在闲置期间可以节省大量的潜在能源。在NZEB分析中,不可再生一次能源的平均使用量比西班牙最大估计阈值范围45-55?kWh / m_(2)?年高出约4倍。因此,大学需要深入的能源革新战略才能达到欧盟NZEB的目标。

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