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首页> 外文期刊>Marine Geodesy >Improving the Coastal Mean Dynamic Topography by Geodetic Combination of Tide Gauge and Satellite Altimetry
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Improving the Coastal Mean Dynamic Topography by Geodetic Combination of Tide Gauge and Satellite Altimetry

机译:通过潮汐计和卫星高程的大地测量结合改进海岸平均动态地形。

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摘要

The ocean mean dynamic topography (MDT) is the surface representation of the ocean circulation. The MDT may be determined by the ocean approach, which involves temporal averaging of numerical ocean circulation model information, or by the geodetic approach, wherein the MDT is derived using the ellipsoidal height of the mean sea surface (MSS), or mean sea level (MSL) minus the geoid as the geoid. The ellipsoidal height of the MSS might be estimated either by satellite or coastal tide gauges by connecting the tide gauge datum to the Earth-centred reference frame. In this article we present a novel approach to improve the coastal MDT, where the solution is based on both satellite altimetry and tide gauge data using new set of 302 tide gauges with ellipsoidal heights through the SONEL network. The approach was evaluated for the Northeast Atlantic coast where a dense network of GNSS-surveyed tide gauges is available. The typical misfit between tide gauge and satellite or oceanographic MDT was found to be around 9 cm. This misfit was found to be mainly due to small scale geoid errors. Similarly, we found, that a single tide gauge places only weak constraints on the coastal dynamic topography.
机译:海洋平均动态地形(MDT)是海洋环流的表面表示。 MDT可以通过海洋方法来确定,该方法涉及对海洋环流数值信息进行时间平均,也可以通过大地测量方法来确定,其中MDT是使用平均海面(MSS)的椭圆高度或平均海平面( MSL)减去大地水准面作为大地水准面。 MSS的椭球高度可以通过将潮汐仪基准面连接到以地球为中心的参考系来通过卫星或沿海潮汐仪进行估算。在本文中,我们提出了一种改进沿海MDT的新颖方法,该解决方案基于卫星测高仪和潮汐仪数据,并通过SONEL网络使用了一组新的302椭球高的潮汐仪。该方法已在东北大西洋沿岸进行了评估,那里有可用GNSS调查的潮汐仪的密集网络。发现潮汐仪与卫星或海洋MDT之间的典型失配约为9 cm。发现这种失配主要是由于小规模的大地水准面误差。同样,我们发现,一个潮汐计仅对沿海动态地形施加了较弱的约束。

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