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Modeling Occupant-Building-Appliance Interaction for Energy Waste Analysis

机译:建模乘员建设 - 设备互动对能量浪费分析

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The objective of this paper is to discover the emergent energy performance and determinants of energy waste in buildings. Electricity consumption in the U.S. attributes to 73% of energy waste in buildings and much of this waste is due to improper design, operation, and use of appliances. In particular, the operation or use phase of buildings and the way occupants behave significantly contribute to energy waste. Understanding the determinants of energy waste during the operation phase of buildings is a challenging task due to the complex interactions between the occupants, building units, and appliances. To decode these complex interactions and facilitate a better understanding of the determinants of energy waste, a simulation approach is used in this study. An agent-based simulation model was developed to capture the diverse attributes and dynamic behaviors of building occupants at the interface of human-building-appliance interactions. The application of the proposed model is demonstrated in a case study. Using simulation experiments, the interactions between occupant, building unit and appliance on energy consumption were investigated. The simulation model also was used for estimating determinants of energy waste. In addition, the simulation model includes a visualization interface that facilitates communication of strategies between the buildings users and facility managers. The results will highlight the significant attributes and effective strategies for energy waste reduction at the interface of human-building-appliance interactions. This information has potentially significant implications for building designers, facility managers, and users through a better understanding of emergent energy performance of buildings.
机译:本文的目的是发现建筑物中能源浪费的紧急能源性能和决定因素。电力消费在美国属性的能源浪费73%的建筑物和许多的这种浪费是由于设计不当,操作和使用电器。特别是,建筑物的操作或使用阶段和乘员的方式表现得显着促进能量浪费。理解在建筑物的运作阶段期间能量浪费的决定因素是一个具有挑战性的任务,因为乘员,建筑单位和家电之间的复杂相互作用。为了解码这些复杂的相互作用并促进更好地了解能量浪费的决定因素,在本研究中使用模拟方法。开发了一种基于代理的仿真模型,以捕获人建筑物互动界面的建筑物的不同属性和动态行为。在案例研究中证明了所提出的模型的应用。研究了仿真实验,研究了乘员,建筑机组和设备对能耗之间的相互作用。仿真模型还用于估计能量浪费的决定因素。此外,仿真模型包括一种可视化接口,便于建筑物用户和设施管理者之间的策略通信。结果将突出人力建筑物互动界面在界面处能突出大量属性和有效策略。这些信息通过更好地理解建筑物的紧急能量性能,对建筑设计师,设施管理人员和用户来说潜在的显着影响。

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