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Incorporation of Future Building Operating Conditions into the Modeling of Building-Microclimate Interaction: A Feasibility Approach

机译:将未来的建筑运行条件纳入建筑微锁互动建模:可行性方法

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This paper presents a novel modeling methodology that integrates the near building environmental conditions (or microclimate), whole-building design, and occupant behavior. Accurate predictions of the future building operating conditions lead to designs that serve the building's purpose - to support occupants' tasks. This study bridges the gap between human factors and architecture to include physical, cognitive, and organizational systems into building information modeling using future typical meteorological year climate data, canyon air temperature microclimate model, and a whole-building energy simulation to investigate the impact of future microclimate conditions on a "typical" single-occupant office. Additionally, to capture the effects of building occupant decision-making and adaptive behaviors, an agent-based model is proposed. Model inputs are task-based, which aim to produce a more robust model to investigate a variety of human-building control interactions to ensure high building performance and occupant comfort and satisfaction.
机译:本文介绍了一种新型建模方法,可集成近建筑环境条件(或小气门),全建筑物设计和占用行为。准确的预测未来建筑的操作条件导致设计为建筑物的目的 - 支持占用者的任务。本研究弥补了人类因素和架构之间的差距,包括使用未来典型气象年度气候数据,峡谷空气温度小微气体模型以及全建筑能量模拟来构建信息建模的物理,认知和组织系统,以调查未来的影响“典型”单人乘客办公室的小气候条件。另外,为了捕获构建乘员决策和自适应行为的影响,提出了一种基于代理的模型。模型输入是基于任务的,其目的是产生更强大的模型,以研究各种人类控制的控制相互作用,以确保高建筑物性能和乘员舒适性和满意度。

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