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Estimating and Fusing Optical Flow, Geostrophic Currents and Sea Surface Wind in the Waters around Kish Island

机译:估计和融合光学流动,热水流,海水中的海水,海岛水域

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The aim of this study is calculation of sea surface currents (SSCs) which are estimated from satellite data sets and processed with the variance component estimation (VCE) algorithm to check role of each data set, in fused surface currents (FSCs). The satellite data used in this study are sea surface temperature (SST), satellite altimetry data and sea surface wind (SSW) that plays the important role to make the SSCs and is measured by Ascat satellite. We use optical flow (OF) method (Horn-Schunck algorithm) to extract sea surface movements from sequential SST imageries; in addition, geostrophic currents (GCs) are estimated by satellite altimetry data like sea surface height (SSH). Combining these data sets, has its pros and cons, the OF results are so dense and precise due to high spatial resolution of MODIS data (SST), but sometimes cloud covering over the sea, does not allow the MODIS sensor to measure the SST. In contrast the SST data, the altimetry data have poor spatial resolution and the GCs are not able to determine small scale SSCs. The VCE algorithm shows variances of our data sets and it can be shown their correlations with themselves and with the FSCs. We also calculate angular differences between FSCs and OF, GCs and SSW, and plot distributions of these angular differences. We discover that, the OF and SSW are homolographic, but OF and GCs are accordant to each other.
机译:该研究的目的是计算从卫星数据集估计的海面电流(SSC),并用方差分量估计(VCE)算法处理,以检查每个数据集的角色,融合表面电流(FSC)。本研究中使用的卫星数据是海表面温度(SST),卫星高度数据和海表面风(SSW),其发挥着重要作用,以制造SSCS并由ASCAT卫星测量。我们使用光学流量(OF)方法(Horn-Schunck算法)从顺序SST成像中提取海面运动;此外,Geostrophic电流(GCS)由卫星高度数据(如海上高度)(SSH)估算。结合这些数据集,具有它的优点和缺点,结果是如此密集和精确,因为MODIS数据的高空间分辨率(SST),但有时云覆盖在海面上,不允许MODIS传感器测量SST。相反,SST数据,Altimetry数据具有较差的空间分辨率,GCS无法确定小规模的SSC。 VCE算法显示了我们的数据集的差异,可以与自己和FSCS一起显示它们的相关性。我们还计算FSC和GCS和SSW的角度差异,以及这些角度差的绘制分布。我们发现,和SSW是同型,但是GCS彼此呼气。

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