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首页> 外文期刊>Atmospheric research >Assessment of the canopy urban heat island of a coastal arid tropical city: The case of Muscat, Oman
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Assessment of the canopy urban heat island of a coastal arid tropical city: The case of Muscat, Oman

机译:沿海干旱热带城市的冠层城市热岛评估:以阿曼马斯喀特为例

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The spatio-temporal variability of the canopy-level urban heat island (UHI) of Muscat is examined on the basis of meteorological observations and mobile measurements during a span of 1 year. The results indicate that the peak UHI magnitude occurs from 6 to 7 hours after sunset and it is well developed in the summer season. The warm core of the UHI is located in the Highland zone of Muscat, along a narrow valley characterized by low ventilation, high business activities, multi-storied buildings and heavy road traffic. Topographically, this valley is surrounded by mountains formed of dark-colored rocks such Ophiolites that can absorb short wave radiation and contribute, herewith, to the emergence of this warm urban core. In addition, this mountainous terrain tends to isolate this location from the cooling effect of the land-sea breeze circulation during the day time. In this warm valley the hottest temperature is encountered in the compact districts of old Muscat. In comparison, the urban thermal pattern in Lowland zone of Muscat is fragmented and the urban-rural thermal difference is reduced because of the lower urban density of the residential quarters. In addition, the flat alluvial terrain on which these residential quarters are located is consistently exposed to the land breeze circulation. Also, the study illuminates and emphasizes the importance giving due consideration to the nature of the rural baseline when assessing the urban effect on an area's climate. For Muscat City, irrespective of the rural baseline used, a significant difference in the value of the urban heat island is registered.
机译:马斯喀特的冠层级城市热岛(UHI)的时空变化是根据1年内的气象观测和移动测量结果进行的。结果表明,UHI峰值出现在日落后的6到7小时,并且在夏季非常发达。 UHI的温暖核心位于马斯喀特的高地地区,沿狭窄的山谷,其特点是通风低,商业活动频繁,多层建筑和道路交通繁忙。从地形上看,这个山谷被深色岩石(如蛇绿岩)形成的山脉包围,这些岩石可以吸收短波辐射,从而促进了这个温暖的城市核心的出现。另外,该山区在白天倾向于使该位置与陆地-海风循环的冷却作用隔离开来。在这个温暖的山谷中,老马斯喀特的紧凑地区遇到了最热的温度。相比之下,由于住宅区的城市密度较低,马斯喀特低地带的城市热格局分散,城乡热差异减小。此外,这些居住区所在的平坦冲积地形始终暴露在陆风中。此外,该研究阐明并强调了在评估城市对某个地区气候的影响时应适当考虑农村基线的性质的重要性。对于马斯喀特市,无论使用哪种农村基准线,都会发现城市热岛的价值存在显着差异。

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