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A dynamic energy performance-driven approach for assessment of buildings energy Renovation-Danish case studies

机译:基于动态能源绩效的建筑节能改造评估方法-丹麦案例研究

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In this study, four buildings in Aarhus, Denmark are considered for energy renovation analysis and assessment aiming to enhance their energy performance. A systematic and dynamic energy performance-driven methodology for buildings energy modelling, simulation and renovation was developed and implemented based on an overall technical, economic and environmental assessment. Detailed dynamic energy performance models were developed for the buildings considering various specifications, envelope characteristics and energy supply systems configurations. The models were calibrated using actual energy consumption data and occupancy schedules. Buildings primary energy consumption in the range of 158-192 kWh/m(2) of indoor heated area was reported, highlighting large potential for energy performance improvement. Based on field visits, systems and components inspections, technical managers interviews and users feedback, various energy renovation measures and packages were prioritized and investigated employing a holistic approach and considering the technical, economic and environmental impacts of each package. It was found that a renovation package comprising LED lights, efficient equipment, heating circulation pump replacement and ventilation system upgrade is favourable allowing average energy savings of 27.7% with a payback period less than 4 years and average CO2 emissions reduction of 5.1 t/year in the four buildings. However, considering indoor air quality and therthal comfort along with the Danish building energy standards and requirements, a deep energy retrofit package was recommended through improving energy supply systems efficiency and upgrading the buildings envelope. Average energy savings of around 50% were reported with an estimated payback period of 11 years. Moreover, the option of including a 4 kWp PV system along with the deep energy retrofit package was investigated and was found to save up to 71% on the primary energy consumption with average reduction of 115 kWh/m(2), allowing the four buildings to be classified as BR15 Renovation Class 1, the highest class for renovated buildings in Denmark. (C) 2017 Elsevier B.V. All rights reserved.
机译:在这项研究中,丹麦奥胡斯的四座建筑物被考虑进行能源翻新分析和评估,以提高其能源绩效。在总体技术,经济和环境评估的基础上,开发并实施了一种以系统和动态能源绩效为驱动力的建筑能源建模,模拟和改造方法。考虑到各种规格,围护结构特征和能源供应系统配置,为建筑物开发了详细的动态能源性能模型。使用实际能耗数据和占用时间表对模型进行了校准。据报道,建筑物的一次能源消耗在158-192 kWh / m(2)的室内加热区域内,突出了提高能源性能的巨大潜力。基于现场访问,系统和组件检查,技术经理访谈和用户反馈,采用整体方法并考虑每个包装的技术,经济和环境影响,对各种能源改造措施和包装进行了优先排序和调查。研究发现,包括LED灯,高效设备,供热循环泵更换和通风系统升级在内的翻新计划非常有利,可以使平均节能量达到27.7%,投资回收期少于4年,平均二氧化碳排放量每年减少5.1吨。四个建筑物。但是,考虑到室内空气质量和舒适度以及丹麦的建筑能源标准和要求,建议通过改善能源供应系统的效率和升级建筑围护结构来进行深度能源改造。据报道,平均节能量约为50%,预计投资回收期为11年。此外,还研究了将4 kWp光伏系统与深度能源改造套件一起使用的选择方案,发现该方案最多可节省71%的一次能源消耗,平均降低115 kWh / m(2),从而允许四座建筑物被列为BR15翻新等级1,是丹麦翻新建筑物的最高等级。 (C)2017 Elsevier B.V.保留所有权利。

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