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Numerical study on the effects of aspect ratio and orientation of an urban street canyon on outdoor thermal comfort in hot and dry climate

机译:炎热干燥气候条件下城市街道峡谷纵横比和定向对室外热舒适性影响的数值研究

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This paper discusses the contribution of street design, i.e. aspect ratio (or height-to-width ratio, H/W) and solar orientation, towards the development of a comfortable microclimate at street level for pedestrians. The investigation is carried out by using the three-dimensional numerical model ENVI-met, which simulates the microclimatic changes within urban environments in a high spatial and temporal resolution. Model calculations are run for a typical summer day in Ghardaia, Algeria (32.40°N, 3.80°E, 469 m a.s.l.), a region characterized by a hot and dry climate. Symmetrical urban canyons, with various height-to-width ratios (i.e. H/W= 0.5, 1, 2 and 4) and different solar orientations (i.e. E-W, N-S, NE-SW and NW-SE), have been studied. Special emphasis is placed on a human bio-meteorological assessment of these microclimates by using the physiologically equivalent temperature (PET). The results show contrasting patterns of thermal comfort between shallow and deep urban streets as well as between the various orientations studied. A comparison of all case studies reveals that the time and period of day during which extreme heat stress occurs, as well as the spatial distribution of PETs at street level, depend strongly on aspect ratio and street orientation. This is crucial since it will directly influence the design choices in relation to street usage, e.g. streets planned exclusively for pedestrian use or including motor traffic, and also the time of frequentation of urban spaces. Both investigated urban factors can mitigate extreme heat stress if appropriately combined. The solar access indoors has been briefly discussed as an additional criterion in designing the street by including winter needs for solar energy.
机译:本文讨论了街道设计的贡献,即纵横比(或高宽比,H / W)和太阳能方向,对街道上为行人提供舒适的微气候的发展。通过使用三维数值模型ENVI-met进行调查,该模型以高时空分辨率模拟了城市环境中的微气候变化。在阿尔及利亚加尔达亚(32.40°N,3.80°E,469 m a.s.l.)的典型夏季进行模型计算,该地区的气候干燥炎热。研究了对称的城市峡谷,它们具有各种高宽比(即H / W = 0.5、1、2和4)和不同的太阳方位(即E-W,N-S,NE-SW和NW-SE)。通过使用生理等效温度(PET),对这些微气候的人类生物气象评估尤为重要。结果表明,浅层和深层城市街道之间以及所研究的不同方向之间的热舒适性形成对比。所有案例研究的比较表明,发生极端热应力的时间和时段以及街道水平上PET的空间分布在很大程度上取决于纵横比和街道方向。这是至关重要的,因为它将直接影响与街道使用相关的设计选择,例如专供行人使用或包括机动车通行的街道,以及频繁进出城市空间的时间。如果适当组合,两个调查的城市因素都可以减轻极端的热应力。通过包括冬季对太阳能的需求,已简短讨论了室内太阳能通道作为设计街道的附加标准。

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