华南不同冷空气路径下持续湿冷事件的特征与机理

IF 6.5 2区 地球科学 Q1 METEOROLOGY & ATMOSPHERIC SCIENCES Advances in Atmospheric Sciences Pub Date : 2024-04-13 DOI:10.1007/s00376-023-3088-4
Xiaojuan Sun, Li Chen, Chuhan Lu, Panxing Wang
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引用次数: 0

摘要

我们研究了不同类型冷空气路径下的持续湿冷事件(PWCE)的特征和机制。结果表明,华南西部地区持续性湿冷事件的累积单站频率高于东部地区。脉动频率的单站模式有 "长江均匀模式 "和 "东西逆模式"。其中,"长江均匀模式 "是主要模式,因此我们重点研究这一模式。长江均匀模式的PWCE冷空气路径分为三种类型,即西部、西北部和北部类型,其中西部类型所占比例最大。三种路径下的脉动欧洲大气环流差异明显。对流层低层的热反转层有利于降水的形成。三种路径的正水汽收支主要出现在南边界。
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Characteristics and Mechanisms of Persistent Wet–Cold Events with Different Cold-air Paths in South China

We investigate the characteristics and mechanisms of persistent wet-cold events (PWCEs) with different types of cold-air paths. Results show that the cumulative single-station frequency of the PWCEs in the western part of South China is higher than that in the eastern part. The pattern of single-station frequency of the PWCEs are “Yangtze River (YR) uniform” and “east–west inverse”. The YR uniform pattern is the dominant mode, so we focus on this pattern. The cold-air paths for PWCEs of the YR uniform pattern are divided into three types—namely, the west, northwest and north types—among which the west type accounts for the largest proportion. The differences in atmospheric circulation of the PWCEs under the three types of paths are obvious. The thermal inversion layer in the lower troposphere is favorable for precipitation during the PWCEs. The positive water vapor budget for the three types of PWCEs mainly appears at the southern boundary.

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来源期刊
Advances in Atmospheric Sciences
Advances in Atmospheric Sciences 地学-气象与大气科学
CiteScore
9.30
自引率
5.20%
发文量
154
审稿时长
6 months
期刊介绍: Advances in Atmospheric Sciences, launched in 1984, aims to rapidly publish original scientific papers on the dynamics, physics and chemistry of the atmosphere and ocean. It covers the latest achievements and developments in the atmospheric sciences, including marine meteorology and meteorology-associated geophysics, as well as the theoretical and practical aspects of these disciplines. Papers on weather systems, numerical weather prediction, climate dynamics and variability, satellite meteorology, remote sensing, air chemistry and the boundary layer, clouds and weather modification, can be found in the journal. Papers describing the application of new mathematics or new instruments are also collected here.
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