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2024年昆明准静止锋对云南的影响OA

Impact of the Kunming Quasi-Stationary Front on Yunnan in 2024

中文摘要英文摘要

利用地面观测资料、ERA5再分析资料和中国气象局弥勒云贵准静止锋野外科学试验基地新型垂直探测资料,分析了2024年影响云南的昆明准静止锋的基本情况,并通过典型个例分析锋面进退立体结构特征及降水相态变化指标.结果表明:1)2024年影响云南的昆明准静止锋过程共有24次共157 d,较常年偏多,强度偏弱,主要出现在冬、春、秋季和初夏,其中增强西进型最多;2)昆明准静止锋影响时,风场变化先于湿度场和温度场变化,湿度、温度等在垂直方向上的分布不均匀,存在多层结构;3)锋面增强西进前,弥勒受偏东风影响时间延长,伸展高度升高,风力加大,维持和东退阶段则相反;4)锋面过境后3~4 h,弥勒上空1~3 km出现锋面逆温,降雪或降雨时段逆温增强,降雪时段近地面<0℃的层结深厚;5)无锋时相对湿度、水汽密度垂直结构呈现双峰型,近地面和中高层较高,锋面过境后5~7 h低层湿层增厚、湿度增大,中高层湿层变薄、湿度降低,水汽主要集中在2 km以下高度;6)无锋降雨时段云底高度降低,有锋降雨时段云底高度抬高,出现雾的时段云底高度<250 m;7)降雨时段的积分液态水含量>1.2 kg/m2,积分液态水含量与降雨量呈正相关,积分水汽、积分液态水含量在降雪开始前最大.

Based on ground observation data,ERA5 reanalysis data,and new vertical sounding data from the Mile Field Research Station for Yungui Quasi-Stationary Front,China Meteorological Administration,this study analyzed the characteristics of the 2024 Kunming quasi-stationary front.A typical case was analyzed to examine the three-dimensional structural characteristics of the front's advance and retreat,as well as precipitation phase change.The results show that a total of 24 Kunming quasi-stationary front processes affected Yunnan in 2024,lasting for 157 d.Compared with the climatological mean,the processes occurred more frequently with weaker intensity,and mainly appeared in winter,spring,autumn and early summer.Among all types,the intensified westward-advancing type was the most frequent.When affected by the Kunming quasi-stationary front,variations in the wind field occur earlier than those in the humidity and temperature fields.Humidity and temperature show uneven vertical distribution with multi-layer structural characteristics.Before the front intensifies and moves westward,the easterly winds over Mile persist longer,extend to higher altitudes and strengthen.The opposite occurs during the maintenance and eastward retreat stages.3 to 4 h after frontal passage,frontal inversion occurs at heights of 1 to 3 km above Mile.The inversion intensifies during snowfall or rainfall periods,and a deep layer with temperature below 0℃near the surface is observed during snowfall.In the absence of a front,the vertical profiles of relative humidity and water vapor density exhibit bimodal structures,with high values near the surface and in the middle and upper levels.5 to 7 h after frontal passage,the low-level moist layer thickens and humidity increases,while the moist layer in the middle and upper levels thins with decreased humidity.Water vapor is mainly concentrated below 2 km.During non-frontal rainfall,the cloud base height decreases,whereas during frontal rainfall,the cloud base height rises.When fog occurs,the cloud base height is less than 250 m.The integrated liquid water content exceeds 1.2 kg/m2 during rainfall periods.It is positively correlated with rainfall amount.Both integrated water vapor and integrated liquid water content reach their maximum values prior to the onset of snowfall.

周秀美;陈艳;朱莉;尤红;赵红珍;王然;段雪梅

云南省红河州气象台,蒙自 661199||中国气象局弥勒云贵准静止锋野外科学试验基地,弥勒 652300中国气象局弥勒云贵准静止锋野外科学试验基地,弥勒 652300||云南省气象科学研究所,昆明 650034中国气象局弥勒云贵准静止锋野外科学试验基地,弥勒 652300||云南省气象台,昆明 650034中国气象局弥勒云贵准静止锋野外科学试验基地,弥勒 652300||云南省气象学会,昆明 650034云南省弥勒市气象局,弥勒 652300云南省弥勒市气象局,弥勒 652300中国气象局弥勒云贵准静止锋野外科学试验基地,弥勒 652300||云南省曲靖市气象科技服务中心,曲靖 655000

天文与地球科学

昆明准静止锋新型探测资料三维结构特征锋面进退相态变化

Kunming quasi-stationary frontnew type of detection datathree-dimensional structural featurefrontal advance and retreatphase transition

《气象科技进展》 2026 (3)

16-27,40,13

中国气象科学研究院基本科研业务费专项基金项目(2023Z010)中国气象局创新发展专项(CXFZ2025J120)云南省气象局揭榜挂帅项目(YNJBGS202302)

10.3969/j.issn.2095-1973.2026.03.002

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