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Night-time naturally ventilated offices: Statistical simulations of window-use patterns from field monitoring

机译:夜间自然通风办公室:现场监视的窗口使用模式的统计模拟

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This paper investigates occupant behaviour of window-use in night-time naturally ventilated offices on the basis of a pilot field study, conducted during the summers of 2006 and 2007 in Cambridge, UK, and then demonstrates the effects of employing night-time ventilation on indoor thermal conditions using predictive models of occupant window-use. A longitudinal field study shows that occupants make good use of night-time natural ventilation strategies when provided with openings that allow secure ventilation, and that there is a noticeable time of day effect in window-use patterns (i.e. increased probability of action on arrival and departure). We develop logistic models of window-use for night-time naturally ventilated offices, which are subsequently applied to a behaviour algorithm, including Markov chains and Monte Carlo methods. The simulations using the behaviour algorithm demonstrate a good agreement with the observational data of window-use, and reveal how building design and occupant behaviour collectively affect the thermal performance of offices. They illustrate that the provision of secure ventilation leads to more frequent use of the window, and thus contributes significantly to the achievement of a comfortable indoor environment during the daytime occupied period. For example, the maximum temperature for a night-time ventilated office is found to be 3 ℃ below the predicted value for a daytime-only ventilated office.
机译:本文基于2006年夏季和2007年夏天在英国剑桥进行的一项试点实地研究,调查了夜间自然通风办公室窗户使用者的行为,然后论证了夜间通风对家庭使用窗户的影响。使用乘员车窗使用的预测模型得出室内热状况。一项纵向的现场研究表明,当居住者设有可确保安全通风的开口时,他们会充分利用夜间的自然通风策略,并且窗户使用模式中会有明显的白天影响(即,到达和采取行动的可能性增加)。离开)。我们为夜间自然通风的办公室开发了窗口使用的逻辑模型,随后将其应用于行为算法,包括马尔可夫链和蒙特卡洛方法。使用行为算法进行的仿真证明与窗户使用的观测数据非常吻合,并揭示了建筑物设计和居住者行为如何共同影响办公室的热性能。他们说明,提供安全的通风会导致窗户的使用更加频繁,因此,在白天所占的时段内,为实现舒适的室内环境做出了巨大贡献。例如,发现夜间通风办公室的最高温度比仅白天通风办公室的预测值低3℃。

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