首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Satellite observations of mesoscale ocean features and copropagating atmospheric surface fields in the tropical belt
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Satellite observations of mesoscale ocean features and copropagating atmospheric surface fields in the tropical belt

机译:卫星观测中尺度海洋特征和热带带大气层传播

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Recent studies of air-sea interaction using satellite data have shown a high positive correlation between wind speed and sea surface temperature (SST) over mesoscale ocean features in certain frontal regions. The aim of this study is to determine to what extent mesoscale ocean dynamics modifies the surface wind speed over the global tropics between 40°S and 40°N. Cross-spectral and linear regression methods are used to identify robust relationships between ocean and atmospheric variables. The ocean dynamical features, measured by their sea surface height anomaly (SSHA), affect SST in a manner consistent with advection of the mean temperature gradient by anomalous currents. The response varies from 0.2°C of SST per cm of SSHA near the equator to 0.05°C cm?1 at higher latitudes. A remarkably consistent in-phase relationship between SST and wind speed is found over the complete domain. Wind speed response varied from 0.5 to 1.5 ms?1 per °C of SST change. This in-phase response of wind speed is consistent with previous studies suggesting that the SST variations cause changes in the vertical exchange of momentum and in the pressure gradient, which alter the wind speed.
机译:最近使用卫星数据进行的海-海相互作用研究表明,在某些额叶区域中尺度海洋特征上,风速和海表温度(SST)之间存在高度正相关。这项研究的目的是确定中尺度海洋动力学在多大程度上改变了40°S到40°N之间全球热带的表面风速。跨谱和线性回归方法用于识别海洋和大气变量之间的稳健关系。通过海平面高度异常(SSHA)来衡量的海洋动力学特征以与异常流平均温度梯度平流一致的方式影响海温。响应范围从赤道附近每厘米SSHA的SST为0.2°C到更高纬度的0.05°C cm?1。在整个范围内,SST和风速之间存在非常一致的同相关系。每SST的变化,风速响应在0.5到1.5 ms?1之间变化。风速的这种同相响应与先前的研究一致,表明SST的变化会引起动量的垂直交换和压力梯度的变化,从而改变风速。

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