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Thermal effects of building geometry and spacing on the urban canopy layer microclimate in a hot-humid climate in summer

机译:夏季炎热气候中建筑物几何形状和间距对城市冠层微气候的热效应

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摘要

A quantitative analysis is presented for evaluating the diurnal thermal impact of proposed building arrangements on the urban canopy layer (UCL) air temperature, in summer in a hot-humid region. Building configuration along an urban street is quantitatively specified in this study by the building dimensions, by the spacing of the units and by the width of the street. The generic model described here is representative of the actual form of residential buildings found mostly along urban streets in Israel's cities. Sixty different building configurations were studied. The diurnal air temperature pattern in summer was calculated for each configuration using the analytical Green CTTC model, and compared with that of a nearby representative meteorological station at an open site. The results indicate significant thermal effects in the UCL due to the building form. The extent of the maximum impact is about 6.8 K at 1500h, namely ranging from 4.7 K above the value measured at the reference meteorological station (for shallow open spaces with wide spacing), to 2.1 K below this (for deep open spaces with narrow spacing). The statistical analysis of the results indicates the feasibility of assessing the expected maximum thermal effect of building designs of the generic form studied here, through a general linear relationship. This, thereby, provides a useful tool in judging the expected climatic impact of a proposed building design. Copyright (C) 2004 Royal Meteorological Society.
机译:提出了定量分析,用于评估夏季炎热潮湿地区中拟议建筑布置对城市冠层(UCL)气温的昼夜热影响。在这项研究中,通过建筑物尺寸,单位间距和街道宽度来定量指定沿城市街道的建筑物构型。此处描述的通用模型代表了居住建筑物的实际形式,这些建筑物大多出现在以色列城市的城市街道上。研究了60种不同的建筑配置。使用分析型Green CTTC模型,针对每种配置计算了夏季的昼夜气温模式,并将其与附近露天场所的代表性气象站的气温模式进行了比较。结果表明,由于建筑形式,UCL中存在明显的热效应。在1500h时,最大影响的程度约为6.8 K,即从参考气象站的测量值之上的4.7 K(对于具有宽间隔的浅空旷空间)到在此之下的2.1 K(对于具有窄间隔的深空旷空间) )。结果的统计分析表明,通过一般的线性关系,可以评估此​​处研究的一般形式的建筑设计的预期最大热效应。因此,这为判断拟议建筑设计的预期气候影响提供了有用的工具。版权所有(C)2004皇家气象学会。

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