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Data visualization and analysis of energy flow on a multi-zone building scale

机译:多区域建筑规模的数据可视化和能流分析

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Modern commercial buildings' resource consumption is metered at various levels of spatial and temporal resolution to track and reduce energy use and greenhouse gas emissions. However, not all data that could be used to detect faults or identify efficiency improvements are available due to the cost of meters and inaccessibility of the data they produce. In the field of building operation, building performance simulation (BPS) can help in quantifying unmeasured energy flows, for instance solar gains, heat loss from infiltration, etc. Furthermore, integrating building information modeling (BIM) in building operation and maintenance can decrease operation risk and costs, as well as maintain facility management quality. However, in practice there is a lack of efficient utilization of this application by building operators. The aim of this paper is to provide an integrated framework to estimate and visualize energy flows and the associated cost. The framework consists of 1) developing a BIM model, 2) converting the BIM model to a BPS model, 3) calibrating the model, and 4) visualizing energy and cost flows using Sankey diagrams. The study demonstrates this framework on a real-world case study, and hence provides a comprehensive energy use assessment on the building level to facilitate the decision-making by building operators. Finally, the results of a survey that was deployed to a sample user group to assess the usability and effectiveness of the proposed Sankey diagrams are provided.
机译:现代商业建筑的资源消耗按不同的时空分辨率进行计量,以跟踪和减少能源使用和温室气体排放。然而,由于电表的成本和它们产生的数据的不可访问性,并非所有可用于检测故障或识别效率提高的数据都可用。在建筑物运营领域,建筑物性能模拟(BPS)可以帮助量化无法测量的能量流,例如太阳能获取,渗透热损失​​等。此外,在建筑物运营和维护中集成建筑物信息模型(BIM)可以减少运营风险和成本,以及维护设施管理质量。但是,实际上,建筑物运营商缺乏对该应用程序的有效利用。本文的目的是提供一个综合框架,以估算和可视化能源流及相关成本。该框架包括1)开发BIM模型,2)将BIM模型转换为BPS模型,3)校准模型以及4)使用Sankey图可视化能源和成本流。该研究在实际案例研究中演示了此框架,因此可在建筑物级别提供全面的能源使用评估,以促进建筑物运营商的决策。最后,提供了调查结果,该调查结果已部署到样本用户组,以评估建议的Sankey图的可用性和有效性。

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