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Development of Sankey diagrams to visualize real HVAC performance

机译:开发Sankey图以可视化实际的HVAC性能

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摘要

One of the crucial elements to ensure the efficiency of building operations is to understand the dynamics of energy flows, control strategies, and occupant behaviour in buildings. Currently, abundant sensors and sub-meters are installed in modern buildings to measure resource consumption at various levels of spatial and temporal resolution to help track and reduce energy use and greenhouse gas emissions. These sensors and sub-meters provide many data sources at the building level; however, this data is not necessarily in a readily comprehensible format. In addition, the current data availability and visualization tools have some limitations in identifying system inefficiencies and possible solutions. This paper proposes a method to estimate and visualize energy and mass flows in addition to the corresponding cost through different components of heating, ventilation, and air-conditioning (HVAC) system using Sankey diagrams. The aim of this study is to facilitate accessibility of data and to identify system inefficiencies. A major contribution of the paper is to convert sparse sensor data into estimated energy flows for each major AHU and plant loops component. The proposed method is then applied to a large Canadian university building. This paper concludes by discussing the challenges in obtaining data from sensors and sub-meters. The proposed method helps in understanding the performance of the whole system - not just individual components. Moreover, it helps identify operational problems and quantify their impact. (C) 2017 Elsevier B.V. All rights reserved.
机译:确保建筑物运行效率的关键要素之一是了解建筑物中的能量流,控制策略和乘员行为。当前,现代建筑中安装了大量的传感器和分表,以各种水平的时空分辨率测量资源消耗,以帮助跟踪和减少能源使用和温室气体排放。这些传感器和子仪表在建筑物级别提供了许多数据源。但是,此数据不一定是易于理解的格式。另外,当前的数据可用性和可视化工具在识别系统效率低下和可能的解决方案方面有一些限制。本文提出了一种使用Sankey图估算和可视化能量和质量流量以及除热,通风和空调(HVAC)系统的不同组件之外的相应成本的方法。这项研究的目的是促进数据的可访问性并确定系统效率低下。本文的主要贡献是将稀疏传感器数据转换为每个主要AHU和工厂回路组件的估计能量流。然后将所提出的方法应用于大型加拿大大学建筑。本文通过讨论从传感器和亚表获得数据的挑战来结束。所提出的方法有助于理解整个系统的性能,而不仅仅是单个组件。此外,它有助于识别操作问题并量化其影响。 (C)2017 Elsevier B.V.保留所有权利。

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