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Effect of building interface form on thermal comfort in gymnasiums in hot and humid climates

机译:湿热气候下建筑界面形式对体育馆热舒适性的影响

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摘要

The thermal environment and thermal comfort of a building are greatly affected by the design of the building interface form.Most contemporary architectural designs consider only the relations between architectural form and architectural beauty.Few studies on the correlation of architectural form and thermal comfort address the influence of architectural form on thermal comfort and thermal environment.These studies are particularly important for gymnasium architectures located in hot and humid areas,which have high requirements for thermal comfort.This paper presents an experimental investigation and an analysis of the effect of the building interface form of gymnasiums on thermal comfort in hot and humid subtropical regions during summer.Results showed that the influence of the top interface forms on thermal comfort is mainly dominated by the mean radiant temperature,which could be controlled to improve thermal comfort.The influence of side interface forms on thermal comfort is mainly dominated by air velocity,and thermal comfort could be improved by promoting natural ventilation on the side interface form design to reduce indoor heat.This research enhanced our understanding of the relation between the interface form and the thermal comfort of gymnasiums.In addition,this paper provides a theoretical reference for the sustainable design of gymnasiums in hot and humid climates.
机译:建筑物界面形式的设计极大地影响了建筑物的热环境和热舒适性。大多数当代建筑设计只考虑了建筑形式与建筑美感之间的关系。对热舒适度要求很高的炎热潮湿地区的体育馆建筑,这些研究尤其重要。本文提供了一项实验研究并分析了建筑界面形式的影响。结果表明,顶部界面形式对热舒适性的影响主要受平均辐射温度支配,可以通过控制平均辐射温度来控制,以提高热舒适性。形式上的热舒适性主要是以空气速度为主导,通过在侧面接口模板的设计中促进自然通风以减少室内热量,可以改善热舒适性。本研究增强了我们对接口模板与体育馆热舒适性之间关系的理解。为炎热和潮湿气候下体育馆的可持续设计提供理论参考。

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  • 来源
    《建筑学研究前沿(英文版)》 |2019年第1期|32-43|共12页
  • 作者单位

    Institute of Urban Innovation, Yokohama National University, 240-8501, Japan;

    School of Engineering and Computer Science, University of Hull, HU6 7RX, UK;

    Institute of Urban Innovation, Yokohama National University, 240-8501, Japan;

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  • 入库时间 2022-08-19 04:27:08
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