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Evaluation of the energy consumption of an educational building, based on the UNI EN 15193–1:2017, varying different lighting control systems

机译:根据UNI EN 15193–1:2017,对教育建筑的能耗进行评估,并使用不同的照明控制系统

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Nowadays, it is well-known the importance of reducing the CO2 emissions, through several interventions for retrofitting and renovating the entire building sector. In line with this, this work is focused on the building lighting sector, which accounts for about 20% of the total electricity consumption of the construction industry. In the standard UNI EN 15193–1:2007 “Energy performance of buildings-Energy requirements for lighting”, different LENI (Lighting Energy Numeric Indicator) calculation methods for assessing the energy consumption of artificial lighting are available. A new software LENICALC, developed by ENEA (Ente per le Nuove Tecnologie, l'Energia e l'Ambiente), based on this standard, allows users to calculate LENI values for a specific building. In this framework, the authors analyzed an educational building to understand the impact of daylight and occupancy lighting system controls and the combination of them on the final lighting consumptions. Simulations are carried out with the LENICALC tool. Results highlight that a balanced combination in the use of the two types of lighting control systems allows to obtain higher energy savings compared to the use of both efficient control systems.
机译:如今,众所周知,通过多种干预措施来改造和翻新整个建筑行业,减少二氧化碳排放的重要性。与此相对应,这项工作集中在建筑照明领域,该领域约占建筑业总电力消耗的20%。在标准UNI EN 15193–1:2007“建筑物的能源性能-照明的能量要求”中,可以使用不同的LENI(照明能量数字指标)计算方法来评估人造照明的能耗。由ENEA(Ente per le Nuove Tecnologie,Energia e l'Ambiente)开发的新软件LENICALC,基于此标准,允许用户计算特定建筑物的LENI值。在此框架下,作者分析了一座教育建筑,以了解日光和占用照明系统控件的影响以及它们的组合对最终照明消耗的影响。使用LENICALC工具进行仿真。结果表明,与两种高效控制系统的使用相比,两种照明控制系统的平衡使用可以实现更高的节能效果。

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