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Wintertime winds in and around the Ulaanbaatar metropolitan area in the presence of a temperature inversion

机译:乌兰巴托大都市地区及其周围地区冬季冬季存在温度反演

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Temperature inversions are frequently observed in mountainous urban areas and can cause severe air pollution problems especially in wintertime. This study investigates wintertime winds in and around the Ulaanbaatar, the capital of Mongolia, metropolitan area in the presence of a temperature inversion using the Weather Research and Forecasting (WRF) model coupled with the Seoul National University Urban Canopy Model (SNUUCM). Ulaanbaatar is located in complex terrain and in a nearly east-west-oriented valley. A wintertime scenario with clear skies, weak synoptic winds, and a temperature inversion under the influence of a Siberian high-pressure system is selected. Local winds are weak in the presence of the temperature inversion. In the daytime, weak mountain upslope winds develop, up-valley winds appear to be stronger in the urban area than in the surrounding areas, and channeling winds are produced in the main valley. The bottom of the temperature inversion layer rises up in the urban area, and winds below the bottom of the temperature inversion layer strengthen. In the nighttime, mountain downslope winds and down-valley winds develop. Urban effects in the presence of the temperature inversion are examined by comparing the results of simulations with and without the city. It is shown that in the daytime the urban area acts to elevate the bottom of the temperature inversion layer and weaken the strength of the temperature inversion layer. Winds east of the city weaken in the afternoon and down-valley winds develop later in the simulation with the city.
机译:在山区山区经常观察到温度倒置,并且可能引起严重的空气污染问题,尤其是在冬天。这项研究使用天气研究与预报(WRF)模型与首尔国立大学城市雨棚模型(SNUUCM)进行了温度反演,研究了蒙古首都乌兰巴托及其周边大城市地区的冬季风。乌兰巴托(Ulaanbaatar)地势复杂,几乎是东西向的山谷。选择在晴朗的天空,弱的天气风和西伯利亚高压系统影响下的温度反演的冬季场景。在温度反转的情况下,局部风微弱。在白天,山区上坡风减弱,市区的上谷风似乎比周围地区强,并且在主要山谷中产生窜风。温度反转层的底部在市区中升高,并且在温度反转层的底部以下的风增强。在夜间,会产生山下坡风和下谷风。通过比较有无城市情况下的模拟结果,研究了存在温度反演时的城市影响。结果表明,在白天,市区起到抬高温度反转层底部和削弱温度反转层强度的作用。下午,城市以东的风减弱,随后在模拟城市时,出现了下谷风。

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