Modeling of the Calm Situations in the Atmosphere of Almaty

IF 1.1 Q4 METEOROLOGY & ATMOSPHERIC SCIENCES Asian Journal of Atmospheric Environment Pub Date : 2023-11-28 DOI:10.5572/ajae.2022.007
Edige Zakarin, Alexander Baklanov, Larissa Balakay, Tatyana Dedova, Kairat Bostanbekov
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Abstract

This article addresses modeling of the atmospheric boundary layer of the city of Almaty (Kazakhstan) in stagnant, environmentally unfavorable conditions using WRF Model. The city is located on the northern slope of Trans-Ili Alatau, where the rate of recurrence of calm and low-wind (1–2 m/sec) days reaches about 80%. All simulations were made for a period from 28.11.2016 to 05.12.2016, covering main synoptic situations of the stagnant atmosphere: the extent of Asian anticyclone, higher and lower pressure gradient fields. The model integrated three nested domains with grid sizes 9, 3 and 1 km, respectively. The initial boundary conditions were formed based on ERA5-reanalysis. Subject to the WRF model requirements, the land-use map with a standard USGS set (24 categories) was developed, to which 3 categories of the urban areas were added. The most relevant configuration of parameterization methods was selected: short-wave and long-wave radiation (Mlawer), surface layer (Monin-Obukhov similarity theory), urban area (BEP), boundary layer (Bougeault-Lacarrere), turbulence (Smagorinsky). The article demonstrates that the WRF model adequately reflects fundamental urban atmosphere patterns in the most unfavorable anticyclone periods of the autumn-winter season. It was established that the accuracy of estimates decreases with the transition to weak cyclonic activity. Based on the simulation results and remote sensing data, the territory in question is divided into four climatic zones to which a comparative method was applied; however for a detailed correlative analysis a denser network of meteorological stations is required. Calculations showed that the wind along the Ili river valley prevails in the northern part, regularly changing its western direction to eastern. Near the mountain area mountain-valley wind circulation prevails. The blocking inversion layer has a strong impact. The urban heat islands strongly depend on wind conditions. For example, a nocturnal heat island is cooled by the cold wind flow from the mountains.

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阿拉木图大气中的平静状态模型
本文利用 WRF 模式对阿拉木图市(哈萨克斯坦)在停滞、环境不利条件下的大气边界层进行建模。阿拉木图市位于外伊犁阿拉套北坡,该地区平静和小风(1-2 米/秒)天数的重复率达到 80%。所有模拟都是在 2016 年 11 月 28 日至 2016 年 12 月 5 日期间进行的,涵盖了停滞大气的主要同步情况:亚洲反气旋的范围、较高和较低的气压梯度场。模型集成了三个嵌套域,网格大小分别为 9、3 和 1 千米。初始边界条件是根据ERA5分析得出的。根据 WRF 模型的要求,绘制了标准 USGS 土地利用图(24 个类别),并增加了 3 个城市地区类别。选择了最相关的参数化方法配置:短波和长波辐射(Mlawer)、表层(Monin-Obukhov 相似理论)、城市区域(BEP)、边界层(Bougeault-Lacarrere)、湍流(Smagorinsky)。文章证明,在秋冬季节最不利的反气旋时期,WRF 模型充分反映了城市大气的基本模式。文章指出,随着气旋活动向弱气旋活动过渡,估计的准确性会降低。根据模拟结果和遥感数据,有关地区被划分为四个气候区,并对其采用了比较方法;不过,要进行详细的相关分析,需要更密集的气象站网络。计算结果表明,伊犁河谷沿岸的风向主要在北部地区,经常由西向东转变。山区附近盛行山谷风环流。阻挡反转层的影响很大。城市热岛在很大程度上取决于风向条件。例如,夜间热岛会受到来自山区的冷风流的冷却。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Asian Journal of Atmospheric Environment
Asian Journal of Atmospheric Environment METEOROLOGY & ATMOSPHERIC SCIENCES-
CiteScore
2.80
自引率
6.70%
发文量
22
审稿时长
21 weeks
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