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Maximum urban heat island intensity in a medium-sized coastal Mediterranean city

机译:地中海中型沿海城市的最大城市热岛强度

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摘要

This paper studies the maximum intensity of the urban heat island (UHI) that develops in Volos urban area, a medium-sized coastal city in central Greece. The maximum temperature difference between the city center and a suburb is 3.4℃ and 3.1 ℃ during winter and summer, respectively, while during both seasons the average maximum UHI intensity is 2.0℃. The UHI usually starts developing after sunset during both seasons. It could be attributed to the different nocturnal radiative cooling rate and to the different anthropogenic heat emission rate that are observed at the city center and at the suburb, as well as to meteorological conditions. The analysis reveals that during both seasons the daily maximum hourly (DMH) UHI intensity is positively correlated with solar radiation and with previous day's maximum hourly UHI intensity and negatively correlated with wind speed. It is also negatively correlated with relative humidity during winter but positively correlated with it during summer. This difference could be attributed to the different mechanisms that mainly drive humidity levels (i.e., evaporation in winter and sea breeze (SB) in summer). Moreover, it is found that SB development triggers a delay in UHI formation in summer. The impact of atmospheric pollution on maximum UHI intensity is also examined. An increase in PM10 concentration is associated with an increase in maximum UHI intensity during winter and with a decrease during summer. The impact of PM10 on UHI is caused by the attenuation of the incoming and the outgoing radiation. Additionally, this study shows that the weekly cycle of the city activities induces a weekly variation in maximum UHI intensity levels. The weekly range of DMH UHI intensity is not very large, being more pronounced during winter (0.4℃). Moreover, a first attempt is made to predict the DMH UHI intensity by applying regression models, whose success is rather promising.
机译:本文研究了希腊中部沿海中等城市沃洛斯(Volos)地区发展的城市热岛(UHI)的最大强度。冬季和夏季,市中心与郊区之间的最大温差分别为3.4℃和3.1℃,而两个季节的平均最大UHI强度为2.0℃。 UHI通常在两个季节的日落后开始发展。这可能归因于在市中心和郊区观察到的不同的夜间辐射降温速率和不同的人为热量散发速率以及气象条件。分析显示,在两个季节中,每日最大小时(HIH)的最大UHI强度与太阳辐射成正相关,与前一天的最大小时UHI强度成正相关,与风速成负相关。在冬季,它也与相对湿度成负相关,而在夏季,它与相对湿度成正相关。这种差异可以归因于主要驱动湿度水平的不同机制(即,冬天的蒸发和夏天的海风(SB))。此外,发现SB的发展会触发夏季UHI形成的延迟。还检查了大气污染对最大UHI强度的影响。 PM10浓度的增加与冬季最大UHI强度的增加以及夏季的最大UHI强度的降低有关。 PM10对UHI的影响是由入射辐射和出射辐射的衰减引起的。此外,这项研究表明,城市活动的每周周期会导致最大UHI强度水平每周发生变化。 DMH UHI强度的每周范围不是很大,在冬季(0.4℃)更为明显。此外,首次尝试通过应用回归模型来预测DMH UHI强度,其成功颇有希望。

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  • 来源
    《Theoretical and applied climatology》 |2012年第4期|p.407-416|共10页
  • 作者单位

    Institute of Technology and Management of Agricultural Ecosystems, Laboratory of Agricultural Engineering and Environment, Center for Research and Technology-Thessaly,Technology Park of Thessaly, 1st Industrial Area of Volos,38500 Volos, Greece;

    Institute of Technology and Management of Agricultural Ecosystems, Laboratory of Agricultural Engineering and Environment, Center for Research and Technology-Thessaly,Technology Park of Thessaly, 1st Industrial Area of Volos,38500 Volos, Greece,Department of Agricultural Crop Production and Rural Environment, Laboratory of Agricultural Constructions and Environmental Control, University of Thessaly,Fytokou St.,38446 N. Ionia, Magnisia, Greece;

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