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The impact of canyon geometry on intra Urban and Urban: Suburban night temperature differences under warm weather conditions

机译:峡谷的几何形状对市区内和市区的影响:温暖天气下郊区的夜温差

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The present paper investigates the impact of canyon geometry on the temperature regime and nocturnal heat island development in the very dense urban area of Athens, Greece. Detailed measurements of air temperature have been carried out within three deep urban canyons of different aspect ratios (H/W = 3, 2.1 and 1.7) during the night period of the summer and autumn of 2007. An analysis was carried out to investigate the relative impact of the canyon geometry, the undisturbed wind velocity, ambient temperature, and cloud cover on the development of a nocturnal heat island. A clear increase of the median, maximum and minimum values of the cooling rates has been observed for decreasing aspect ratios. Under low ambient temperatures, high wind speeds correspond to a substantial rise of the cooling rate in the urban canyons mainly because of the increased convective losses. On the contrary, cooling rates decrease substantially under high-undisturbed wind speeds and ambient temperatures because of the important convective gains. The impact of cloud cover was found to be important as cloudy skies cause a substantial decrease of the cooling rates in the urban canyons. Comparisons were performed between the temperature data collected in the three studied urban canyons and temperatures recorded in an urban as well as a suburban open space station.
机译:本文研究了峡谷的几何形状对希腊雅典非常稠密市区的温度状况和夜间热岛发展的影响。在2007年夏季和秋季的夜间,在三个不同纵横比(H / W = 3、2.1和1.7)的深城市峡谷中,对空气温度进行了详细的测量。峡谷几何形状,不受干扰的风速,环境温度和云层覆盖对夜间热岛发展的影响。对于降低的纵横比,已经观察到冷却速率的中值,最大值和最小值明显增加。在低环境温度下,高风速对应于城市峡谷中冷却速率的大幅上升,这主要是由于对流损失增加所致。相反,由于重要的对流增益,在高风速和环境温度下,冷却​​速度会大大降低。人们发现云层覆盖的影响很重要,因为多云的天空导致城市峡谷的降温速度大大降低。比较了在三个研究过的城市峡谷中收集的温度数据与城市以及郊区开放空间站中记录的温度之间的差异。

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