Behavior of ITCZ’ second band near the Peruvian coast during the 2017 coastal El Niño

IF 1 4区 地球科学 Q4 METEOROLOGY & ATMOSPHERIC SCIENCES
Atmosfera Pub Date : 2021-06-28 DOI:10.20937/atm.53017
Vannia Aliaga Nestares, Diego Zimmermann, Nelson Quispe Gutiérrez
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引用次数: 1

Abstract

The behavior of the second band of the Intertropical Convergence Zone (ITCZ), near the Peruvian coast during early 2017, is studied, using precipitation, surface winds, sea surface temperature (SST) and atmospheric variables in different isobaric levels. The proposal of a daily index (Ia) to identify, opportunely, the formation of this band and the Lorenz energy terms in the region is also considered. This band was present from late January to early April 2017, associated with an anomalous dipole of sea level pressure between the east and west Oriental Equatorial Pacific, that configured anomalously northerly surface winds and relaxation of southeasterly trade winds near Peru. In medium levels, a zonally-oriented positive mixing ratio anomaly is observed in early March over the ITCZ’s second band, associated with heavy rain systems over the northern Peruvian coastal region. In the same period, positive anomalies of divergence in high tropospheric levels are observed. The daily Ia index allowed an effective detection of the ITCZ’s second band with 11 days prior the maximum coastal precipitation, and the Lorenz energy terms showed kinetic eddies energy (KE) peaks in January and February and a contribution of barotropic instability in equatorial regions.
2017年沿海厄尔尼诺期间,ITCZ第二带在秘鲁海岸附近的行为
利用不同等压水平下的降水、表面风、海面温度和大气变量,研究了2017年初秘鲁海岸附近热带辐合带(ITCZ)第二带的行为。还考虑了日指数(Ia)的建议,以适时地确定该带的形成和该区域的洛伦兹能量项。该带出现于2017年1月下旬至4月初,与东赤道太平洋和西赤道太平洋之间的海平面压力异常偶极子有关,在秘鲁附近形成异常偏北的表面风和东南信风的缓和。在中等水平上,3月初,在ITCZ的第二个波段上观察到一个带状的正混合比异常,与秘鲁北部沿海地区的暴雨系统有关。在同一时期,在对流层高层观测到了正的散度异常。Ia日指数允许在最大沿海降水量前11天有效检测ITCZ的第二个波段,洛伦茨能量项显示,动能涡旋能量(KE)在1月和2月达到峰值,赤道地区的正压不稳定也起到了一定作用。
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来源期刊
Atmosfera
Atmosfera 地学-气象与大气科学
CiteScore
2.20
自引率
0.00%
发文量
46
审稿时长
6 months
期刊介绍: ATMÓSFERA seeks contributions on theoretical, basic, empirical and applied research in all the areas of atmospheric sciences, with emphasis on meteorology, climatology, aeronomy, physics, chemistry, and aerobiology. Interdisciplinary contributions are also accepted; especially those related with oceanography, hydrology, climate variability and change, ecology, forestry, glaciology, agriculture, environmental pollution, and other topics related to economy and society as they are affected by atmospheric hazards.
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