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Stochastic modeling of overtime occupancy and its application in building energy simulation and calibration

机译:加班占用的随机模型及其在建筑能耗模拟与标定中的应用

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摘要

Overtime is a common phenomenon around the world. Overtime drives both internal heat gains from occupants, lighting and plug-loads, and HVAC operation during overtime periods. Overtime leads to longer occupancy hours and extended operation of building services systems beyond normal working hours, thus overtime impacts total building energy use. Current literature lacks methods to model overtime occupancy because overtime is stochastic in nature and varies by individual occupants and by time. To address this gap in the literature, this study aims to develop a new stochastic model based on the statistical analysis of measured overtime occupancy data from an office building. A binomial distribution is used to represent the total number of occupants working overtime, while an exponential distribution is used to represent the duration of overtime periods. The overtime model is used to generate overtime occupancy schedules as an input to the energy model of a second office building. The measured and simulated cooling energy use during the overtime period is compared in order to validate the overtime model. A hybrid approach to energy model calibration is proposed and tested, which combines ASHRAE Guideline 14 for the calibration of the energy model during normal working hours, and a proposed KS test for the calibration of the energy model during overtime. The developed stochastic overtime model and the hybrid calibration approach can be used in building energy simulations to improve the accuracy of results, and better understand the characteristics of overtime in office buildings. (C) 2014 Elsevier Ltd. All rights reserved.
机译:加班是世界各地的普遍现象。超时会导致乘员,照明和插头负载的内部热量增加,以及在超时期间的HVAC运行。超时会导致更长的占用时间,并使建筑服务系统的运行超出正常工作时间,因此超时会影响建筑物的总能耗。由于超时本质是随机的,并且随个人和时间的不同而变化,因此目前的文献缺乏对加班率进行建模的方法。为了弥补文献中的这一空白,本研究旨在基于对办公楼中加班占用数据的统计分析,开发一种新的随机模型。二项分布用于表示加班的总人数,而指数分布用于表示加班的持续时间。加班模型用于生成加班占用计划,作为第二座办公楼能源模型的输入。比较超时期间测量和模拟的冷却能耗,以验证超时模型。提出并测试了一种混合的能量模型校准方法,该方法结合了ASHRAE准则14(用于在正常工作时间内校准能量模型)和建议的KS测试(用于在加班期间校准能量模型)。所开发的随机加班模型和混合标定方法可用于建筑能耗模拟,以提高结果的准确性,并更好地了解办公楼的加班特征。 (C)2014 Elsevier Ltd.保留所有权利。

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