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Global Ocean Tide Models: Assessment and Use within a Surface Model of Lowest Astronomical Tide

机译:全球海潮模型:最低天文潮的表面模型中的评估和使用

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The UK Hydrographic Office (UKHO)-sponsored Vertical Offshore Reference Frames (VORF) project aims to develop tidal level transformation models that are referenced to the GRS80 ellipsoid and thus compatible with GNSS positioning; in particular, height-ing. Benefits include increasing the efficiency of hydrographic surveying, providing a stable consistent reference frame and enabling integration with land data in the coastal zone. Seven contemporary global ocean tide models are used to derive Lowest Astronomical Tide (LAT) surfaces which are each assessed by comparison with LAT values from the 7,389-strong UKHO tide gauge database, with the results correlated with distance from land. The proportion of truly offshore and pelagic gauges is relatively limited; however, the transition zone whereby the global ocean tide models commence to deteriorate in accuracy is evident at approximately 30km from the coast. The DTU10 model was selected as the strongest candidate overall. Subsequently, a thin plate spline method is used with the tide gauge dataset to enhance the DTU10 LAT surface in the coastal zone, creating a high resolution global LAT surface with respect to mean sea level. It is seen by cross-validation that the method may be used to predict LAT in near-shore locations with a standard error of 0.23 m.
机译:由英国水文局(UKHO)赞助的垂直海上参考框架(VORF)项目旨在开发参考GRS80椭球的潮汐水位转换模型,从而与GNSS定位兼容;特别是身高。好处包括提高水文测量的效率,提供稳定一致的参考系以及与沿海地区的土地数据集成。使用七个当代全球海洋潮汐模型来推算出最低天文潮汐(LAT)表面,分别通过与7389强UKHO潮汐仪数据库中的LAT值进行比较来评估,其结果与距陆地的距离相关。真正的近海和远洋仪表的比例相对有限;但是,在距海岸约30 km处,全球海洋潮汐模型的精度开始下降的过渡带是显而易见的。 DTU10模型被选为总体上最强的候选者。随后,将薄板样条法与潮汐仪数据集一起使用,以增强沿海地区的DTU10 LAT表面,从而创建相对于平均海平面的高分辨率全球LAT表面。通过交叉验证可以看出,该方法可用于预测近岸位置的LAT,标准误差为0.23 m。

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