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A Spectrally Consistent Globally Defined Geodetic Mean Dynamic Ocean Topography

机译:一个光谱一致的全球定义的大地平均动态海洋地形

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摘要

The space-borne geodetic temporal mean dynamic topography (MDT) is obtained from the difference of altimetric mean sea surface (MSS) h and the geoid height N. With the geostrophic surface currents obtained from its gradient, the MDT is an essential parameter when describing the ocean dynamics. Spectral consistency of h and N is crucial to minimize MDT errors. Frequently, h is globalized to allow for a spherical harmonic analysis, and small scales beyond maximum degree and order (d/o) resolved in the geoid are cut off. However, common globalization causes ocean-land steps in h-N and spectral inconsistencies of N and h over land. To overcome both issues, a methodology is proposed based on globalization of the MDT. A Laplacian smoother with the coastal MDT values as boundary condition is applied, resulting in a smooth surface over land and a continuous ocean-land transition. The new methodology strongly reduces Gibbs effects and the need to work with high-resolution MDTs to minimize them. Reduction of resolution is tested to reduce MDT uncertainties caused by the commission error expected to increase with decreasing scale. Applying drifter data and a high-resolution hy-drodynamic ocean model, it is shown that for the Gulf Stream and the Kuroshio, geodetic MDTs applying recent combined geoid models contain physical information up to at least d/o 420 (48-km spatial scale). For oceanic regions with strong geoid gradients, a higher-resolution MDT might be needed to prevent Gibbs effects caused by remaining inconsistencies between the geoid and the MSS.
机译:从公共平均海面(MSS)H的差异和大量地高度N.利用从其梯度获得的根瘤性表面电流的差异,获得了空间的大道颞型动态地形(MDT)。MDT在描述时是必不可少的参数海洋动力学。 H和N的光谱一致性对于最小化MDT误差是至关重要的。通常,H是全球化的,以允许球形谐波分析,并且切断大量超出大量程度和订单(D / O)的小规模被切断。然而,普通全球化导致H-N和N和H的光谱不一致的海洋阶段。为了克服这两个问题,基于MDT的全球化提出了一种方法。 Laplacian与沿海MDT值的漂亮作为边界条件,导致陆地的光滑和持续的海地过渡。新方法强烈降低了GIBBS效果,需要使用高分辨率MDT来最小化它们。测试分辨率的减少以减少预期委员会错误造成的MDT不确定性,以随着较低的规模增加。应用漂移数据和高分辨率的高分辨率流体动力学海洋模型,表明,对于海湾流和Kuroshio,应用最近组合的大地区模型的大地测量MDTS包含至少D / O 420的物理信息(48公里的空间尺度)。对于具有强大的大型木地梯梯度的海洋区域,可能需要更高分辨率的MDT来防止吉布斯效应留下了大地区和MSS之间的不一致。

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  • 来源
    《Oceanographic Literature Review》 |2020年第9期|2059-2059|共1页
  • 作者

    F. Siegismund;

  • 作者单位

    Inst. Astr. & Phys.Geodesy Technische Universitaet Muenchen Munich Germany;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 22:54:15

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