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首页> 外文期刊>Journal of Cleaner Production >A data-driven analysis of building energy use with emphasis on operation and maintenance: A case study from the UAE
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A data-driven analysis of building energy use with emphasis on operation and maintenance: A case study from the UAE

机译:基于数据驱动的建筑能源使用分析,重点是运营和维护:阿联酋的案例研究

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A pre-requisite to reducing the energy intensity of the building sector is to assess and understand current drivers of energy consumption. Drivers include building design characteristics, outdoor environmental conditions, as well as the operation patterns of building systems by facility managers and occupants. In the United Arab Emirates (UAE), where buildings consume more than 70% of the total electricity generated, a comprehensive analysis of the drivers of building energy performance has not yet been conducted. This paper proposes an empirical top-down statistical framework to comprehensively evaluate drivers of energy use for a stock of buildings. The approach is unique in its ability to capture the combined effects of technical, as well as, operation-related building parameters. A combination of data analysis techniques, including CHAID decision trees and regression models, is proposed and applied to data gathered from 713 mixed-use buildings in downtown Abu Dhabi. Results indicate that in addition to physical building parameters such as window tinting, operational parameters, including AC cleanliness, chiller condition, and thermostat temperature setting have shown significant impacts on energy consumption levels. The findings shed light on the crucial - yet often overlooked - role of facility managers and occupants in ensuring efficient energy performance in the building sector. (C) 2018 Elsevier Ltd. All rights reserved.
机译:降低建筑行业能源强度的前提条件是评估和了解当前的能源消耗驱动因素。驱动因素包括建筑设计特征,室外环境条件以及设施管理员和居住者对建筑系统的操作模式。在阿拉伯联合酋长国(UAE),建筑物消耗的电力占总发电量的70%以上,尚未对建筑物能源绩效的驱动因素进行全面分析。本文提出了一个自上而下的经验统计框架,以全面评估建筑物库存中的能源使用驱动力。该方法具有捕获技术以及与运营相关的建筑参数的综合效果的能力。提出了包括CHAID决策树和回归模型在内的数据分析技术的组合,并将其应用于从阿布扎比市中心的713个混合用途建筑物中收集的数据。结果表明,除了诸如窗户着色之类的物理建筑参数外,包括交流电清洁度,冷却器条件和恒温器温度设置在内的运行参数还对能耗水平产生了重大影响。调查结果揭示了设施经理和居住者在确保建筑部门高效能源绩效中的关键作用,但常常被忽视。 (C)2018 Elsevier Ltd.保留所有权利。

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