首页> 外文会议>Asian conference on remote sensingACRS >SEA SURFACE CURRENT IN THE GULF OF THAILAND BASED ON NINETEEN YEARS ALTIMETRIC DATA AND GPS TRACKED DRIFTING BUOY
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SEA SURFACE CURRENT IN THE GULF OF THAILAND BASED ON NINETEEN YEARS ALTIMETRIC DATA AND GPS TRACKED DRIFTING BUOY

机译:基于泰国海湾的海面电流,基于19年的公共数据和GPS追踪漂移浮标

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The advent of satellite altimetry in the last two decades has been much improved our understanding of mesoscale features of ocean circulation. Present study describes the seasonal variations of geostrophic current within the Gulf of Thailand using the seasonally averaged sea level anomaly (SLA) data from multi-mission satellite altimetry. Nineteen years of multi-mission satellite altimetry data from year 1993 to 2012 have been processed using Radar Altimeter Database System (RADS) and used to estimate the surface geostrophic current. In RADS data processing, the 2012 updated environmental and geophysical corrections were applied. Comparison of satellite estimated sea level anomaly with in-situ observations from two tide gauges station; Getting and Ko Lak have shown close similarity in the pattern of sea level variations and significant correlation coefficient. The surface geostrophic current anomaly is combined with the mean geostrophic (Mean Dynamic Ocean Topography model) to obtain the absolute geostrophic current. A basin-wide anti-cyclonic eddy exists throughout the year but it is weak during second inter-monsoon. Another anti-cyclonic eddy exist near the west cost of gulf throughout the year. In order to validate the surface current derived in this study, the obtained surface current patterns have been compared with drifting buoy trajectories. The pattern of estimated surface current is almost consistent with the Argos-tracked Drifting Buoy's track and confirmed the basin wide anti-cyclonic eddy at the central Gulf of Thailand.
机译:过去二十年的卫星高度偏移的出现已经提高了我们对海洋循环的Mescle特征的理解。目前的研究描述了泰国海湾内的热脑电流的季节变化,使用来自多功率卫星高度的季节性平均海平面异常(SLA)数据。 1993年至2012年从1993年至2012年的多项任务卫星高度测量数据使用雷达高度计数据库系统(RAD)处理了一年,并用于估计表面热脑电流。在RADS数据处理中,应用2012年更新的环境和地球物理修正。卫星估计海平面异常与两倍潮仪站原位观测的比较;获得和KO Lak在海平面变化模式和显着的相关系数方面表现出密切的相似性。表面地嗜热电流异常与平均热脑(平均动态海洋地形模型)组合以获得绝对的热脑电流。全年存在盆地抗旋流涡流,但在第二次间季风期间是薄弱的。全年海湾西部成本附近存在另一种反气旋涡流。为了验证在本研究中导出的表面电流,将所获得的表面电流模式与漂移浮标轨迹进行比较。估计表面电流的图案几乎符合Argos跟踪的漂移浮标的轨道,并在泰国的中央海湾确认盆地宽抗旋流涡流。

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