Circulation Pattern Controls of Summer Temperature Anomalies in Southern Africa

IF 6.5 2区 地球科学 Q1 METEOROLOGY & ATMOSPHERIC SCIENCES Advances in Atmospheric Sciences Pub Date : 2023-12-06 DOI:10.1007/s00376-023-2392-3
Chibuike Chiedozie Ibebuchi, Cameron C. Lee
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Abstract

This study investigates the relationship between circulation patterns and austral summer temperature anomalies in southern Africa. The results show that the formation of continental lows tends to increase the thickness of the lower atmosphere. Further, the distinct variabilities of high and low pressure under the circulation types, influence air mass advection from the adjacent oceans, as well as atmospheric stability over land. Stronger anticyclonic circulation at the western branch of the Mascarene high-pressure system enhances the low-level cold air advection by southeast winds, decreases the thickness, and lowers the temperature over a majority of the land in southern Africa. Conversely, a weaker Mascarene High, coupled with enhanced cyclonic activity in the southwest Indian Ocean increases low-level warm air advection and increases temperature anomalies over vast regions in southern Africa. The ridging of a closed South Atlantic anticyclone at the southern coast of southern Africa results in colder temperatures near the tip of southern Africa due to enhanced low-level cold air advection by southeast winds. However, when the ridge is weak and westerly winds dominate the southern coast of southern Africa, these areas experience temperature increases. The northward track of the Southern Hemisphere mid-latitude cyclone, which can be linked to the negative Southern Annular Mode, reduces the temperature in the southwestern part of southern Africa. Also, during the analysis period, El Niño was associated with temperature increases over the central parts of southern Africa; while the positive Indian Ocean dipole was linked to a temperature increase over the northeastern, northwestern, and southwestern parts of southern Africa.

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南部非洲夏季温度异常的环流型控制
本研究探讨了南部非洲环流型态与南部夏季温度异常之间的关系。结果表明,大陆低压的形成有增加低层大气厚度的趋势。此外,环流类型下的高压和低压的明显变化影响了来自邻近海洋的气团平流以及陆地上空的大气稳定性。马斯克林高压系统西部分支的强反气旋环流增强了东南风的低空冷空气平流,减少了厚度,降低了南部非洲大部分地区的温度。相反,较弱的马斯克林高压,加上西南印度洋气旋活动的增强,增加了低层暖空气平流,增加了南部非洲广大地区的温度异常。南部非洲南部海岸的一个封闭的南大西洋反气旋脊化导致南部非洲顶端附近的气温变冷,原因是东南风增强了低层冷空气平流。然而,当脊变弱,西风主导南部非洲的南部海岸时,这些地区的温度就会升高。南半球中纬度气旋的北行路径与负的南环模有关,降低了南部非洲西南部的温度。此外,在分析期间,El Niño与南部非洲中部地区的温度升高有关;而印度洋正偶极子则与非洲南部东北部、西北部和西南部的温度升高有关。
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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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