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加那利上升流系统的时空上升流趋势(1967 - 2006年)

Spatio-temporal upwelling trends along the Canary Upwelling System (1967-2006).

作者信息

Gómez-Gesteira M, de Castro M, Alvarez I, Lorenzo M N, Gesteira J L G, Crespo A J C

机构信息

Grupo de Física de la Atmósfera y del Océano, Facultad de Ciencias, Universidad de Vigo, Ourense, Spain.

出版信息

Ann N Y Acad Sci. 2008 Dec;1146:320-37. doi: 10.1196/annals.1446.004.

Abstract

Spatio-temporal trends in upwelling patterns were studied along the Canary Upwelling System for the period 1967-2006. The northwestern coast of African from lat 20 degrees N to 32 degrees N is observed to be under a permanent upwelling regime characterized by coastal sea surface temperatures (SST) colder than the oceanic ones at the same latitude. The temperature difference is termed the temperature upwelling index (UI(SST)). This regime is consistent with the wind-derived Ekman transport (UI(W)), which is observed near the coast and is directed offshore. This index shows the existence of upwelling-favorable conditions all year but has an annual cycle characterized by more upwelling-favorable conditions from April to September, with a maximum in July, and less upwelling-favorable conditions from October to March, with a minimum in December to January. Although both indices can be used to characterize the phenomenon, only UI(W) values were used to quantify upwelling change during the four decades under review because this index is less sensitive to external factors compared to UI(SST). A strong decrease in upwelling intensity has been observed in all seasons. In particular, the summer (winter) decrease is on the order of 45% (20%) of the mean amplitude of the upwelling cycle.

摘要

对1967年至2006年期间加那利上升流系统的上升流模式的时空趋势进行了研究。观测发现,非洲北纬20度至32度的西北海岸处于永久性上升流状态,其特征是沿海海面温度(SST)低于同纬度的海洋表面温度。这种温差被称为温度上升流指数(UI(SST))。这种状态与由风驱动的埃克曼输送(UI(W))一致,在海岸附近观测到埃克曼输送是离岸方向的。该指数显示全年都存在有利于上升流的条件,但具有年度周期,其特征是4月至9月有更多有利于上升流的条件,7月达到最大值,10月至3月有利于上升流的条件较少,12月至1月达到最小值。尽管这两个指数都可用于描述这一现象,但在回顾的四十年中,仅使用UI(W)值来量化上升流变化,因为与UI(SST)相比,该指数对外部因素不太敏感。在所有季节都观测到上升流强度大幅下降。特别是,夏季(冬季)下降幅度约为上升流周期平均幅度的45%(20%)。

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