首页|陆面与大气边界层热力作用对河西走廊冷锋型沙尘暴的影响

陆面与大气边界层热力作用对河西走廊冷锋型沙尘暴的影响

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热力作用对河西走廊沙尘源地的起沙过程和沙尘垂直输送具有重要影响,是该地区沙尘暴预报需要考虑的关键因子.为了揭示热力作用对河西走廊冷锋型沙尘暴强度的影响,本文利用ERA5逐时再分析资料和常规气象观测资料,针对发生在河西走廊春季不同强度冷锋型沙尘暴过程,在有利的大气环流形势背景分析基础上,重点诊断分析了边界层气温、锋生函数和地表热通量等热力机制的异同.结果表明:(1)区域冷锋型沙尘暴强度除受高低空风速影响外,其高空到地面冷暖空气强度和位置,地面热低压中心强度及冷锋过境时间等起着重要作用;(2)午后地表感热通量及其09:00-14:00(北京时)感热通量增幅越大,沙尘暴强度越强,一般、强和特强沙尘暴区感热通量最大值(增幅)分别为367(307)W·m-2、417(360)W·m-2和460(380)W·m-2;(3)沙尘暴强度随边界层1.5 km以下爆发前一天增温和爆发前后一天升(降)温差增大而增强,一般、强和特强沙尘暴升温(升降温差)分别为2.9(-16.5)℃、4.9(-17.0)℃和7.9(-22.8)℃;(4)锋生强度越强或者锋生高度越高,沙尘暴越强,一般、强和特强沙尘暴锋生强度分别为208×10-10、477×10-10和588×10-10 K·m-1·s-1,锋生高度分别为767、686和450 hPa.本文研究结果对河西走廊沙尘暴发生发展的陆面热力特征有一定科学认识,为有效提高沙尘暴预报预警准确率提供新的思路和技术方法.
The Influence of Thermal Interaction between Land Surface and Atmospheric Boundary Layer on Cold Front Sandstorm in Hexi Corridor
The thermal effect has an important influence on the sand initiation process and dust vertical transport of the dust source area in Hexi Corridor,and it is a key factor to consider in the sandstorm forecast in this area.To reveal the effect of thermal effect on the intensity of cold front sandstorm in Hexi Corridor,using ECMWF ERA5 hourly reanalysis data and conventional meteorological observation data,the similarities and differences of the thermal mechanisms such as the boundary layer temperature,front function and surface heat flux on the ba-sis of favorable background analysis of atmospheric circulation situation were diagnosed and analyzed.The re-sults show that:(1)In addition to the influence of high and low altitude wind speed,the intensity and position of cold and warm air to ground,the intensity of center and transit time of cold front play important roles in the in-tensity of regional cold front sandstorm;(2)The greater the surface sensible heat flux in the afternoon and the in-crease of thermal flux from 09:00(Beijing Time,the same as after)to 14:00,the stronger the intensity of the duststorm.The maximum(5-hour increase)afternoon sensible heat flux in general,strong and extremely strong duststorm areas are 367(307)W·m-2,417(360)W·m-2and 460(380)W·m-2,respectively.(3)The intensity of the sandstorm increases with the temperature increase range before the outbreak of sandstorm,temperature differ-ences between before and after the outbreak of sandstorm below 1.5 km in the boundary layer,the temperature increase range(temperature difference)in general,strong and extremely strong duststorm areas are 2.9(-16.5)℃,4.9(-17.0)℃,7.9(-22.8℃),respectively;(4)The stronger or higher of frontogenesis,the stronger the duststorm.The intensity of frontogenesis in general,strong and extremely strong duststorm areas are 208×10-10 K·m-1·s-1,477×10-10 K·m-1·s-1 and 686×10-10 K·m-1·s-1,respectively,the accordingly heights of fronto-genes are 767 hPa,686 hPa,450 hPa.The results of this paper have a scientific understanding of the thermal characteristics of the sandstorm in Hexi Corridor,and provide new ideas and technical methods for improving the accuracy of sandstorm prediction and early warning.

Hexi Corridorcold front standstormboundary layer structurefrontogenesis functionsurface heat flux

李玲萍、李天江、李岩瑛、胡丽莉

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甘肃省武威国家气候观象台,甘肃 武威 733000

河西走廊 冷锋型沙尘暴 边界层结构 锋生函数 地表热通量

国家自然科学基金面上项目甘肃省气象局面上项目武威市自然科学基金

41975015Ms2022-11WW2201RPZ025

2024

高原气象
中国科学院寒区旱区环境与工程研究所

高原气象

CSTPCD北大核心
影响因子:2.193
ISSN:1000-0534
年,卷(期):2024.43(2)
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