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首页> 外文期刊>Climate dynamics >Mesoscale SST-wind stress coupling in the Peru-Chile current system: Which mechanisms drive its seasonal variability?
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Mesoscale SST-wind stress coupling in the Peru-Chile current system: Which mechanisms drive its seasonal variability?

机译:秘鲁-智利当前系统中的中尺度海表温度-风应力耦合:哪些机制驱动其季节变化?

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摘要

Satellite observations and a high-resolution regional ocean-atmosphere coupled model are used to study the air/sea interactions at the oceanic mesoscale in the Peru-Chile upwelling current system. Coupling between mesoscale sea surface temperature (SST) and wind stress (WS) intensity is evidenced and characterized by correlations and regression coefficients. Both the model and the observations display similar spatial and seasonal variability of the coupling characteristics that are stronger off Peru than off Northern Chile, in relation with stronger wind mean speed and steadiness. The coupling is also more intense during winter than during summer in both regions. It is shown that WS intensity anomalies due to SST anomalies are mainly forced by mixing coefficient anomalies and partially compensated by wind shear anomalies. A momentum balance analysis shows that wind speed anomalies are created by stress shear anomalies. Near-surface pressure gradient anomalies have a negligible contribution because of the back-pressure effect related to the air temperature inversion. As mixing coefficients are mainly unchanged between summer and winter, the stronger coupling in winter is due to the enhanced large-scale wind shear that enables a more efficient action of the turbulent stress perturbations. This mechanism is robust as it does not depend on the choice of planetary boundary layer parameterization.
机译:卫星观测和高分辨率的区域海-气耦合模型用于研究秘鲁-智利上升流系统中海洋中尺度的海/气相互作用。中尺度海表温度(SST)和风应力(WS)强度之间的耦合已得到证明,并具有相关性和回归系数。该模型和观测结果均显示出相似的空间和季节变化,其耦合特征在秘鲁以外地区比智利北部地区更强,并且与更强的风平均速度和稳定性有关。在两个地区,冬季的耦合强度都比夏季高。结果表明,由SST异常引起的WS强度异常主要是由混合系数异常强迫而部分由风切变异常补偿。动量平衡分析表明,风速异常是由应力剪切异常引起的。由于与气温反转有关的背压效应,近地表压力梯度异常的贡献可忽略不计。由于夏季和冬季之间的混合系数主要保持不变,因此冬季更大的耦合归因于大型风切变的增强,从而使湍流应力扰动的作用更加有效。该机制很稳定,因为它不依赖于行星边界层参数化的选择。

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