2020年內蒙古東南部一次特大暴雪伴凍雨災害天氣特征分析
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中國氣象局沈陽大氣環境研究所聯合開放基金課題(2021SYIAEKFMS13)資助


Analysis of a Disastrous Heavy Snow with Freezing Rainfall in 2020 in Southeast of Inner Mongolian
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    摘要:

    利用常規氣象觀測資料、NCEP逐6 h和逐日再分析資料、FY-2G衛星云圖資料,從環流形勢、水汽條件、動力條件及層結特征方面對2020年11月18—19日內蒙古自治區東南部罕見的特大暴雪伴凍雨過程進行分析。結果表明:①大氣環流異常是造成此次災害性天氣的主要環流背景,500 hPa西風槽和南支槽、700 hPa西南低空急流及切變線、850 hPa以下東北急流、地面氣旋是此次過程的主要影響系統,具有回流暴雪的天氣特征;②低空偏南和偏東急流兩支水汽輸送路徑及水汽強烈輻合為極端暴雪提供了充足的水汽,850 hPa和700 hPa比濕最大分別為5 g·kg-1 和4 g·kg-1;③低空偏南急流代表的暖空氣與北方的冷空氣劇烈交匯,暖濕空氣在低層“冷墊”上爬升,加劇上升運動的發展,導致該區域降雪迅速加強;④非絕熱加熱項F3對鋒面生消作用最小,水平運動項F1是鋒生函數變化的主要貢獻項,鋒生函數F變化與降水強度變化一致,在F>10的較強鋒生區都出現暴雪,因此鋒面的強迫抬升對暴雪的增幅作用不容忽視;⑤鋒區的維持使得低層維持低溫天氣,鋒上逆溫,暖濕空氣沿鋒面抬升,900 hPa 以下“冷墊”與之上的“暖蓋”長時間存在,導致暴雪發生并持續;⑥鋒上逆溫且逆溫區存在融化層,這種垂直結構變化有利于降水相態轉化,高層和低層為低于0 ℃的冷層,中間形成溫度高于0 ℃的暖層,符合融化類凍雨的層結特征。

    Abstract:

    Based on routine observational data, NCEP reanalysis data by every 6 hours and daily FY-2G satellite data, a heavy snow with freezing rain happened on 18-19 November 2020 in the southeast of Inner Mongolian is analyzed, including the circulation situation, water vapour condition, dynamic condition and stratification characteristics. The results show that: The atmospheric circulation anomaly was the main atmospheric circulation background of the disastrous weather; The westerly trough at 500 hPa, southwest jet at 700 hPa and northeast jet below 850 hPa, and the cyclone were mainly influencing systems, with the characteristics of a return-flow heavy snow. The water vapour transportation by the southerly and easterly and the moisture convergence provided sufficient water vapour supply, with the maximum specific humidity of 5 g·kg-1 at 850 hPa and 4 g·kg-1 at 700 hPa. The warm air represented by the southerly jet converged with the cold air of the north. The warm and humid air lifted on the low-level “cold pad”, which intensified the development of ascending motions and led to the rapid enhancement of precipitation. The diabatic heating had little effect on the frontogenesis, and the horizontal movement term primarily contributed to frontogenesis. The change of frontogenesis corresponded to the intensity of snow very well, so the front lifting force couldn’t be ignored in the increase of heavy snow; the maintenance of the frontal zone made the low temperature in the low level, and there was temperature inversion on the front. The warm and humid air rised along the front, and the “cold pad” below 900 hPa and “warm cover” above existed for a long time, which led to the occurrence and persistence of heavy snow. The temperature inversion on the front and melting level was conducive to the precipitation phase transformation. The temperature of the middle layer was higher than 0 ℃, and the upper and lower layer temperature was below 0 ℃, which corresponded to the stratification characteristic of melting freezing rain.

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馬素艷,高晶,李一平,黃曉璐.2020年內蒙古東南部一次特大暴雪伴凍雨災害天氣特征分析[J].氣象科技,2022,50(3):380~389

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  • 收稿日期:2021-04-30
  • 定稿日期:2022-01-06
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  • 在線發布日期: 2022-06-30
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