首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Intraseasonal variability of wind-forced coastal upwelling off central Chile (30 degrees S)
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Intraseasonal variability of wind-forced coastal upwelling off central Chile (30 degrees S)

机译:智利中部(30华氏度)以海为动力的沿海上升流的季节内变化

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Satellite-derived along-shore windstress variability off subtropical Chile at intraseasonal periods has been recently associated with the corresponding wind variability over the tropical Pacific. Along the coastal strip in which satellite winds can not be resolved, wind-driven upwelling might be in principle modulated through large-scale intraseasonal changes in the strength of the subtropical anticyclone and by intraseasonal ocean coastal-trapped waves (CTWs) through associated changes in coastal sea-surface temperatures.Daily anomalies of band-passed outgoing long-wave radiation over the central equatorial Pacific have been selected to represent Madden-Julian Oscillations, as the dominant mode of equatorially sourced, intraseasonal variability in the atmosphere and coastal ocean. Afternoon alongshore pseudo-wind stresses at a representative coastal site in central Chile (30degreesS) describe the upwelling-favourable wind field over a 30-40 km coastal strip. The subtropical anticyclone strength is expressed as a 900-km offshore sea-level pressure (San Felix Island), and the sea-level pressure difference with the coast. CTWs are represented by the smoothed sea-level at 27degreesS.The intermittent nature of intraseasonal variability led to statistical procedures as Wavelet and Singular-Spectrum (SSA) analyses to search for associations among those series. Cross-correlation analysis of the SSA-reconstructed series with the two principal oscillatory modes (40-100-day, and 28-50-day periods, respectively), shows that intraseasonal variability in the subtropical anticyclone strength, partially associated with the Pacific South America teleconnection pattern, has the best association with coastal windstress variability. CTWs appeared to be important in their association with coastal winds only during strong MJO activity in connection with El Nino in the low-frequency intraseasonal band. while in the high-frequency one a fraction of the ASL variability appears to be locally wind-forced. (C) 2004 Elsevier Ltd. All rights reserved.
机译:近来,在季节内期间,亚热带智利以外的卫星衍生的近海风应力变化与热带太平洋上相应的风变化有关。在无法解决卫星风的沿海地带,原则上可能通过副热带反气旋强度的大规模季节内变化以及通过与之相关的季节内海洋沿岸捕集波(CTW)来调制风驱动上升流。赤道中部太平洋的带通外出长波辐射的每日异常已被选为Madden-Julian涛动的代表,是大气和沿海海洋赤道源性季节内变化的主要模式。智利中部一个典型的沿海站点(30度)下午的沿岸伪风应力描述了30-40 km沿海带上的上升气流有利风场。亚热带反气旋强度表示为900公里的离岸海平面压力(圣费利克斯岛),以及与海岸之间的海平面压力差。 CTW以27度的平滑海平面表示。季节内变异的间歇性导致了统计程序,如小波和奇异频谱(SSA)分析以寻找这些序列之间的关联。对具有两种主要振荡模式(分别为40-100天和28-50天)的SSA重建序列的互相关分析表明,亚热带反气旋强度的季节内变化与南太平洋部分相关美国的远程连接模式与沿海风应力变化具有最佳关联。仅在低频季节内波段与厄尔尼诺现象相关的强烈MJO活动期间,CTW才对与沿海风有关具有重要意义。而在高频中,ASL变化的一小部分似乎是局部风力。 (C)2004 Elsevier Ltd.保留所有权利。

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