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Occupant-based energy upgrades selection for Canadian residential buildings based on field energy data and calibrated simulations

机译:基于乘员的能量升级加拿大住宅建筑的选择基于现场能量数据和校准模拟

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Occupant behavior in residential buildings has a direct impact on the effectiveness of energy-saving measures. In order to realize a buildings' carbon mitigation targets, the impact of individual occupancy profiles needs to be integrated with building simulation models. This paper introduces a decision support framework as a potential solution to make energy performance upgrade choices based on different occupancy profiles. This framework has been demonstrated through a case study of two single-family detached homes in Canada, which were highly instrumented with sensors for monitoring energy input and output. The case studies represented two common occupancy profiles-(1) a family of four (consisting of 2 working adults and 2 teenagers); and (2) a retired couple. Firstly, calibrated energy models were developed by using one-year energy use data collected through an intrusive load monitoring technique. Secondly, energy upgrade combinations were considered for each profile and tested for additional investment, payback period and greenhouse gas (GHG) emissions. Lastly, the most suitable combination of energy upgrade for each profile was ranked using a multi-criteria decision-making method (e.g., TOPSIS). Results indicated that the retired couple used more energy than the family of four and required energy upgrades with usually higher payback periods to achieve the same level of GHG emission reduction. The results of this research are timely for energy policymaking and developing best management practices, which need to be implemented along with the deployment of more stringent building standards and codes. (C) 2020 Elsevier Ltd. All rights reserved.
机译:住宅建筑中的占用行为直接影响节能措施的有效性。为了实现建筑物的碳缓解目标,各个占用型材的影响需要与建筑模拟模型集成。本文介绍了一个决策支持框架,作为潜在的解决方案,以基于不同的占用配置文件进行能量性能升级选择。本框架通过了加拿大两家单独分离的家庭的案例研究,这是高度仪表,用于监测能量输入和输出的传感器。案例研究代表了两个常见的占用概况 - (1)四口之家(由2名劳动成年人和2名青少年组成);和(2)退休夫妇。首先,通过使用通过侵入式负荷监测技术收集的一年能量使用数据来开发校准的能量模型。其次,考虑了每个概况的能量升级组合,并进行了额外的投资,投资期和温室气体(GHG)排放。最后,使用多标准决策方法(例如,TOPSIS)排序每个轮廓的能量升级最合适的组合。结果表明,退役夫妇比四口之家和所需的能量升级的节能采用了一般的回收期,以实现相同水平的温室气体排放量。该研究的结果是能源政策制定和开发最佳管理实践的结果,这些规范需要与更严格的建筑标准和代码的部署一起实施。 (c)2020 elestvier有限公司保留所有权利。

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