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Satellite observations of modulation of surface winds by typhoon-induced upper ocean cooling - art. no. 1131

机译:台风引起的上层海洋冷却对卫星表面风调制的卫星观测-艺术。没有。 1131

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1] Two remote sensing data sets, the Tropical Rainfall Measurement Mission Sea Surface Temperature (SST) and the NASA QuikSCAT ocean surface wind vectors, are analysed to study ocean-atmosphere interactions in cold SST regions formed in the trail of two typhoon events. Anomalously cold SST patches up to 6degreesC below the surrounding warm tropical ocean SST are found along the trail of typhoon tracks as cold, deep waters are entrained up to the mixed layer due to typhoon forcing. In both typhoon events, significant and systematic weakening of surface wind speed is found over cold SST patches relative to surface wind speed in surrounding regions. The wind speed anomalies disappear as the patches recover to the level of the surrounding SST. The results are consistent with the mechanism proposed by Wallace et al. that surface winds are modulated by SST via stability. As wind within the well-mixed boundary layer moves over the cold patch, boundary layer stability increases, vertical mixing is suppressed, and the vertical wind shear increases; reduction in surface wind speed is caused. In particular, our result shows that this mechanism can act on relatively small spatial (approximate to 100 km) and short (approximate to 1 day) time scales. [References: 18
机译:1]分析了两个遥感数据集,即热带降雨测量任务海面温度(SST)和NASA QuikSCAT海洋表面风向矢量,以研究在两次台风事件的轨迹中形成的寒冷SST地区的海洋-大气相互作用。由于台风强迫,冷,深水被夹带到混合层,沿着台风径迹发现了周围热带热带海温以下最高6摄氏度的异常冷海面。在这两次台风事件中,相对于周围地区的表面风速,在冷的SST斑块上都发现了表面风速的显着而系统的减弱。当斑块恢复到周围海表温度时,风速异常消失。结果与Wallace等人提出的机理一致。 SST通过稳定性来调制表面风。当充分混合的边界层中的风在冷区上移动时,边界层的稳定性增加,垂直混合受到抑制,垂直风切变增大。造成表面风速降低。特别是,我们的结果表明,这种机制可以作用于相对较小的空间(约100 km)和较短的时间(约1天)。 [参考:18

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