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Quantifying the impact of uncertainty in human actions on the energy performance of educational buildings

机译:量化人类行为不确定性对教育建筑能源绩效的影响

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Actions taken by building occupants and facility managers can have significant impacts on building energy performance. Despite the growing interesting in understanding human drivers of energy consumption, literature on the topic remains limited and is mostly focused on studying individual occupancy actions (e.g., changing thermostat set point temperatures). Consequently, the impact of uncertainty in human actions on overall building performance remains unclear. This paper proposes a novel method to quantify the impact of potential uncertainty in various operation actions on building performance, using a combination of Monte Carlo and Fractional Factorial analyses. The framework is illustrated in a case study on educational buildings, where deviations from base case energy intensity levels exceed 50 kWh/m2/year in some cases. The main contributors to this variation are the thermostat temperature set point settings, followed by the consumption patterns of equipment and lighting systems by occupants during unoccupied periods.
机译:建筑居住者和设施管理者采取的行动可能对建筑能源绩效产生重大影响。尽管人们越来越了解人类的能源消耗驱动因素,但有关该主题的文献仍然很有限,并且主要集中在研究个人的占用行为(例如,改变恒温器设定点温度)。因此,不确定人类行为对整体建筑性能的影响。本文提出了一种新颖的方法,结合蒙特卡洛和分数阶因子分析,可以量化各种操作动作中潜在不确定性对建筑物性能的影响。在教育建筑的案例研究中说明了该框架,其中与基本案例能源强度水平的偏差在某些情况下超过50 kWh / m2 /年。造成这种变化的主要因素是恒温器温度设定点设置,随后是无人居住期间设备和照明系统的消耗模式。

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