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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Sea surface velocities from sea surface temperature image sequences 2. Application to the Brazil-Malvinas Confluence area
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Sea surface velocities from sea surface temperature image sequences 2. Application to the Brazil-Malvinas Confluence area

机译:来自海面温度图像序列的海面速度2.在巴西-马尔维纳斯汇合处的应用

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An inverse variational model is applied to four exceptionally cloud-free sea surface temperature image sequences of the Brazil-Malvinas Confluence area for the purpose of estimating sea surface velocity fields. The velocity fields are constructed by minimizing a mixed layer integrated form of the heat balance equation while the horizontal divergence and vorticity of the flow field are controlled. The source terms involved in the heat balance are determined by fitting a polynomial to diurnal temperature Variations as a function of temperature and longitude. A sensitivity study of the solution to perturbations of the weights imposed to the constraints on divergence and vorticity as well as of the representation of the source terms yields error fields associated with the velocity. A comparison of the estimated velocity fields with available concomitant in situ velocity measurements shows that the fields are realistic. Errors are of the order of 15-20% in magnitude and 20 degrees-25 degrees in direction. These errors fall within the error bars of 25-30% in magnitude and of 30 degrees-35 degrees in direction, except for the summer image series. Surface velocities of 0.5-0.6 m s(-1) are obtained across the Malvinas Current. They are > 1 m s(-1) in the frontal region, in the Brazil Current overshoot, and in warm and cold core rings and vary between 0.3 and 0.8 m s(-1) in the Brazil Current. With some hypotheses on the vertical shear of the horizontal flow the transport of the Malvinas Current is estimated to be 25 +/- 5 Sv between 41 degrees and 40 degrees S. [References: 23]
机译:为了估计海面速度场,将反向变分模型应用于巴西-马尔维纳斯汇合区的四个异常无云的海面温度图像序列。通过最小化热平衡方程的混合层积分形式来构造速度场,同时控制流场的水平散度和涡度。通过将多项式拟合为昼夜温度变化作为温度和经度的函数来确定热平衡中涉及的源项。对散度和涡度约束施加的权重摄动解的敏感性研究以及源项表示形式的敏感性研究,得出了与速度相关的误差场。将估计的速度场与可用的相应的原位速度测量结果进行比较表明,这些场是现实的。误差的量级为15-20%,方向的误差为20度-25度。除夏季图像系列外,这些误差的幅度在25%至30%之间,方向在30度至35度之间。整个马尔维纳斯洋流的表面速度为0.5-0.6 m s(-1)。它们在额叶区域,巴西洋流超调以及冷,热芯环中大于1 m s(-1),在巴西洋流中介于0.3到0.8 m s(-1)之间。在关于水平流的垂直剪切的一些假设下,马尔维纳斯流的传输在41度和40度S之间估计为25 +/- 5 Sv。[参考文献:23]

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