首页> 外文会议>日本建築学会大会 >Fundamental Study on Building Arrangement to Maximize Thermal Acceptability of Outdoors at Different Latitudes Part 1: The Characteristics of Wind Velocity Distributions in Different Building Arrangements in Guangzhou and Sendai
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Fundamental Study on Building Arrangement to Maximize Thermal Acceptability of Outdoors at Different Latitudes Part 1: The Characteristics of Wind Velocity Distributions in Different Building Arrangements in Guangzhou and Sendai

机译:建筑安排的基本研究,以最大限度地利用辽地热可接受性第1部分:广州和仙台不同建筑安排风速分布的特点

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With global warming and UHI (urban heat island) effects, the highest air temperature in summer season sets another new record year by year and extreme hot days last longer and longer. For that reason, more and more people are attacked by heatstroke and some of them even die from it. In order to cool down urban area and therefore reduce heat-related illnesses, this study attempts to maximize thermal acceptability of outdoors by optimizing building arrangement from the viewpoints of urban ventilation and sun-shading. Moreover, the intensity of solar radiation at ground level varies with latitude, so do the effects of sunshading. This indicates that the optimal building arrangement changes with latitude due to the different effects of urban ventilation and sunshading. To understand how the optimal building arrangement changes with latitude, Guangzhou (113°33'E, 23°17'N), China and Sendai (140°52'E, 38°16'N), Japan (shown in Fig. 1) are selected.
机译:随着全球变暖和UHI(城市热岛)的影响,夏季的最高空气温度逐年举办了另一个新的历史新日,最热门的日子持续更长且更长。因此,越来越多的人被中暑攻击,其中一些人甚至会死于它。为了冷却城市地区,从而减少热相关疾病,本研究试图通过从城市通风和太阳遮阳的观点优化建筑安排来最大化户外热的热可接受性。此外,地面水平的太阳辐射强度随着纬度而变化,因此阳光的影响。这表明由于城市通气和阳光的不同效果,最佳建筑安排随着纬度而变化。要了解如何用纬度,广州(113°33'e,23°17'n),中国和仙台(140°52'e,38°16'n),日本(图1所示) )被选中。

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