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Investigating Occupant Behaviour to Inform Terminal Devices' Control in Mixed-Mode Ventilation Buildings

机译:调查占用行为以通知终端设备控制在混合模式通风建筑中的控制

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摘要

Operable windows have become desirable design features of modern mechanically ventilated office buildings in North America. While they improve perceived control and adaptive comfort, their inappropriate use poses risks associated with increased heating and cooling energy use. Therefore, the sequence of operations for terminal devices serving zones with operable windows should be designed in recognition of these risks, which in turn should be informed by research investigating occupants' window and thermostat use behaviour. To this end, this paper examines window and thermostat use data collected from two mixed-mode ventilation buildings in Ottawa, Canada. By developing discrete-time Markov logistic regression models that predict the likelihood of thermostat keypress and window opening/closing instances, indoor conditions that trigger these actions are identified. In addition, machine learning approaches such as decision trees are explored to better understand indoor climatic conditions associated with adaptive behaviours. Based on this analysis, a set of preliminary recommendations is developed to improve terminal device sequencing in mixed-mode ventilation buildings in cold climates such that comfort and energy savings potential of operable windows can be fully realized.
机译:可操作的窗户已成为北美现代机械通风办公楼的理想设计特色。虽然它们改善了感知控制和自适应舒适性,但它们的不当使用与加热和冷却能量使用增加相关的风险。因此,应设计用于可操作窗口区域的终端设备的操作序列,以识别这些风险,这反过来应该通过研究调查乘员窗口和恒温器使用行为来了解。为此,本文审视了从加拿大渥太华的两个混合模式通风建筑收集的窗口和恒温器使用数据。通过开发预测恒温器键盘和窗口打开/关闭实例的可能性的离散时间马尔可夫逻辑回归模型,识别触发这些动作的室内条件。此外,探索决策树等机器学习方法,以更好地理解与自适应行为相关的室内气候条件。基于该分析,开发了一组初步建议,以改善寒冷气候中混合模式通风建筑物中的终端设备测序,使得可操作窗口的舒适度和节能潜力可以完全实现。

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  • 来源
    《ASHRAE Transactions》 |2021年第1期|443-451|共9页
  • 作者单位

    Department of Civil and Environmental Engineering Carleton University Ottawa ON Canada;

    Department of Civil and Environmental Engineering Carleton University Ottawa ON Canada;

    Department of Civil and Environmental Engineering Carleton University Ottawa ON Canada;

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  • 正文语种 eng
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