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首页> 外文期刊>Journal of Geodesy >Efficient and accurate high-degree spherical harmonic synthesis of gravity field functionals at the Earth's surface using the gradient approach
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Efficient and accurate high-degree spherical harmonic synthesis of gravity field functionals at the Earth's surface using the gradient approach

机译:使用梯度法高效准确地合成地球表面重力场功能的高次球谐函数

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摘要

Spherical harmonic synthesis (SHS) of gravity field functionals at the Earth's surface requires the use of heights. The present study investigates the gradient approach as an efficient yet accurate strategy to incorporate height information in SHS at densely spaced multiple points. Taylor series expansions of commonly used functionals quasi-geoid heights, gravity disturbances and vertical deflections are formulated, and expressions of their radial derivatives are presented to arbitrary order. Numerical tests show that first-order gradients, as introduced by Rapp (J Geod 71(5):282-289, 1997) for degree 360 models, produce cm- to dm-level RMS approximation errors over rugged terrain when applied with EGM2008 to degree 2190. Instead, higher-order Taylor expansions are recommended that are capable of reducing approximation errors to insignificance for practical applications. Because the height information is separated from the actual synthesis, the gradient approach can be applied along with existing highly efficient SHS routines to compute surface functionals at arbitrarily dense grid points. This confers considerable computational savings (above or well above one order of magnitude) over conventional point-by-point SHS. As an application example, an ultra-high resolution model of surface gravity functionals (EurAlpGM2011) is constructed over the entire European Alps that incorporates height information in the SHS at 12,000,000 surface points. Based on EGM2008 and residual topography data, quasigeoid heights, gravity disturbances and vertical deflections are estimated at ~200 m resolution. As a conclusion, the gradient approach is efficient and accurate for high-degree SHS at multiple points at the Earth's surface.
机译:地球表面重力场功能的球谐合成(SHS)需要使用高度。本研究将梯度方法作为一种有效而准确的策略进行研究,以在高度密集的多个点上将高度信息合并到SHS中。拟定了常用的拟函数高度,重力扰动和垂直挠度的泰勒级数展开式,并以任意顺序表示了它们的径向导数。数值测试表明,Rapp(J Geod 71(5):282-289,1997)针对360度模型引入的一阶梯度在EGM2008上应用于粗糙地形时,会产生从cm到dm级的RMS逼近误差。建议使用度数为2190的高阶泰勒展开式。该展开式应能够将近似误差减小到对实际应用不重要的程度。由于高度信息与实际的合成是分开的,因此可以将梯度方法与现有的高效SHS例程一起应用,以在任意密集的网格点处计算表面功能。与传统的逐点SHS相比,这可节省大量计算费用(高于或远高于一个数量级)。作为一个应用示例,在整个欧洲阿尔卑斯山上构建了一个超高分辨率的表面重力函数模型(EurAlpGM2011),该模型在SHS中将高度信息纳入了12,000,000个表面点。根据EGM2008和剩余的地形数据,估计准类星体高度,重力扰动和垂直偏转约为200 m分辨率。结论是,梯度方法对于地球表面多个点的高SHS都是有效而准确的。

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