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Thermal comfort in naturally ventilated buildings with double skin façade under tropical climate conditions: The influence of key design parameters

机译:热带气候条件下具有双层皮肤立面的自然通风建筑的热舒适性:关键设计参数的影响

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摘要

This paper evaluates the influence of key design parameters on the thermal behaviour of a naturally ventilated building with Double Skin Façade (DSF) under tropical climate conditions. Using a reference model of a conventional office building in the city of Rio de Janeiro and two groups of design parameters, dynamic thermal simulations are systematically applied to optimize design options with the aim to maximize the annual acceptable thermal comfort levels within the occupied spaces. This study not only defines the dimensional parameters to maximize the system airflows, but also investigates the significance of design decisions such as thermal mass and shading devices on the system performance. Options to avoid unintentional reverse flow on the upper floors and maintenance of balanced horizontal airflow rates across the floors are also addressed. Two optimized naturally ventilated building models with DSF are developed and evaluated in terms of thermal performance. Results show that acceptable thermal comfort levels can be met for nearly 70% of the occupied hours. Although the office building will still require other means of cooling during peak summer periods, the incorporation of DSF as part of a mixed-mode ventilation strategy can potentially have a significant impact on annual energy consumption.
机译:本文评估了关键设计参数对带有双层皮肤立面(DSF)的自然通风建筑在热带气候条件下的热行为的影响。利用里约热内卢市一栋常规办公楼的参考模型和两组设计参数,系统地动态应用了动态热模拟,以优化设计方案,以使占用空间内的年度可接受热舒适度最大化。这项研究不仅定义了使系统气流最大化的尺寸参数,而且还研究了诸如热质量和遮光装置等设计决策对系统性能的重要性。还提出了避免在上层意外倒流以及在整个层之间保持平衡的水平气流速率的选择。根据热性能,开发并评估了两个带有DSF的优化自然通风建筑模型。结果表明,可以在近70%的占用小时内达到可接受的热舒适水平。尽管办公楼在夏季高峰期仍需要其他冷却方式,但将DSF纳入混合模式通风策略的一部分可能会对年度能耗产生重大影响。

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