r)數(shù)和地形渦度、地形散度定量表征地形抬升作用,F(xiàn)r數(shù)自山地向平原減小,對流單體觸發(fā)地400 m高度處Fr數(shù)最大,對流觸發(fā)前,F(xiàn)r數(shù)持續(xù)增大至1左右,氣流爬坡作用增強,氣旋式地形渦度和地形散度水平輻合增強,指示對流單體觸發(fā)。"/>
太行山東麓喇叭口地形極端強對流觸發(fā)個例分析
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災(zāi)害天氣國家重點實驗室開放課題(2023LASW-B02)、中國氣象局創(chuàng)新發(fā)展專項(CXFZ2024J025)、河北省氣象科研開發(fā)項目(23ky14)、石家莊市科技計劃項目(2414909703)和河北省氣象局暴雨強對流野外觀測實驗資助


A Case Analysis of Extreme and Severe Convection Initiation in Trumpet-Shaped Topography at Eastern Foot of Taihang Mountains
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    摘要:

    對流觸發(fā)直接影響強對流天氣的短臨預(yù)警,其發(fā)生機制復(fù)雜,地域性強。本文針對2023年5月17日太行山東麓喇叭口地形觸發(fā)的極端強對流天氣,利用多源高分辨率觀測數(shù)據(jù)和ERA5再分析資料,結(jié)合相似個例,探究此類對流觸發(fā)特點和山地作用。結(jié)果表明:極端強對流發(fā)生在500 hPa淺槽攜帶弱冷空氣自中層入侵地面熱低壓的不穩(wěn)定層結(jié)下,由太行山東麓喇叭口地形400 m高度上觸發(fā)的γ中尺度對流單體演變?yōu)槌墕误w風(fēng)暴造成。在氣溫持續(xù)偏高和弱垂直風(fēng)切變環(huán)境下,對流單體在850 hPa以下溫度鋒暖區(qū)一側(cè)的王快水庫附近觸發(fā),初生地南北兩側(cè)溫差達3~4 ℃,水汽接近飽和。鋒前東南風(fēng)與偏北風(fēng)輻合線自地面伸至850 hPa,偏東風(fēng)厚度約1 km,最大風(fēng)速6~8 m·s-1,位于0.5 km附近。對流單體觸發(fā)前,太行山東麓200~600 m山坡上新生帶狀對流積云,與山體走向一致,這與邊界層輻合線及山地?zé)崃娖扔嘘P(guān),對流在輻合線靠近山體一側(cè)觸發(fā)。Froude(Fr)數(shù)和地形渦度、地形散度定量表征地形抬升作用,Fr數(shù)自山地向平原減小,對流單體觸發(fā)地400 m高度處Fr數(shù)最大,對流觸發(fā)前,Fr數(shù)持續(xù)增大至1左右,氣流爬坡作用增強,氣旋式地形渦度和地形散度水平輻合增強,指示對流單體觸發(fā)。

    Abstract:

    Convection initiation (CI) directly affects the early warning of severe convective weather, while the mechanism of CI with obvious regional characteristics is complex. Based on multi-source high-resolution observation data and ERA5 reanalysis data, the characteristics and causes of the extreme severe convection triggered at the trumpet-shaped terrain in the eastern foot of the Taihang Mountains on 17 May 2023 are explored, combined with a similar case. The results show that under the unstable stratification of the 500 hPa shallow trough carrying weak cold air from the middle layer invading the surface thermal low pressure, the extreme convection caused by a supercell storm evolved from a mesoscale convective cell triggered at the 400 m height of the trumpet-shaped terrain in the eastern foot of the Taihang Mountains. Under the environment of continuous high temperature and weak vertical wind shear, a convective cell was triggered near Wangkuai Reservoir on the warm side of the temperature front below 850 hPa. The 2-m temperature difference between the north and south sides of the convective cell was 3-4 ℃, and the water vapour was close to saturation. Meanwhile, the convergence line of southeast wind and northerly wind extended from the ground to 850 hPa, and the thickness of easterly wind with a maximum wind speed of 6-8 m/s near 0.5 km was about 1 km. Before convection initiation, the new banded convective cumulus clouds at the 200-600 m slope of the eastern foot of the Taihang Mountains were consistent with the mountain direction, which was related to the boundary convergence line and the thermal forcing on the mountain. The convection was triggered on the side of the convergence line near the mountain. Froude number (Fr) , terrain vorticity and terrain divergence quantitatively characterised the terrain uplift effect. The Fr number decreased from the mountain to the plain with the peak value at the height of 400 m where the convective cell was triggered. Before CI, the Fr number escalated to about 1, indicating the airflow climbing effect, and the cyclonic terrain vorticity and terrain horizontal divergence were enhanced, then the convective cell was triggered.

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鈐偉妙,閆雪瑾,李國翠,張旭影,曹越,崔新艷.太行山東麓喇叭口地形極端強對流觸發(fā)個例分析[J].氣象科技,2025,53(4):557~571

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  • 收稿日期:2024-08-22
  • 定稿日期:2025-05-07
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  • 在線發(fā)布日期: 2025-08-27
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