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首页> 外文期刊>Journal of Geodesy >Localized spectral analysis of global satellite gravity fields for recovering time-variable mass redistributions
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Localized spectral analysis of global satellite gravity fields for recovering time-variable mass redistributions

机译:用于恢复时变质量重新分布的全球卫星重力场的局部频谱分析

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A spatiospectral localization method is discussed for processing the global geopotential coefficients from satellite mission data to investigate time-variable gravity. The time-variable mass variation signal usually appears associated with a particular geographical area yielding inherently regional structure, while the dependence of the satellite gravity errors on a geographical region is not so evident. The proposed localization amplifies the signal-to-noise ratio of the (non-stationary) time-variable signals in the geopotential coefficient estimates by localizing the global coefficients to the area where the signal is expected to be largest. The results based on localization of the global satellite gravity coefficients such as Gravity Recovery And Climate Experiment (GRACE) and Gravity and Ocean Circulation Explorer (GOCE) indicate that the coseismic deformation caused by great earthquakes such as the 2004 Sumatra-Andaman earthquake can be detected by the low-low tracking and the gra-diometer data within the bandwidths of spherical degrees 15-30 and 25-100, respectively. However, the detection of terrestrial water storage variation by GOCE gradiometer is equivocal even after localization.
机译:讨论了一种时空光谱定位方法,该方法用于处理来自卫星任务数据的全局地势系数,以研究随时间变化的重力。随时间变化的质量变化信号通常看起来与特定的地理区域相关,从而产生固有的区域结构,而卫星重力误差对地理区域的依赖性却不是那么明显。拟议的定位通过将全局系数定位到预计信号最大的区域来放大地理势系数估计中(非平稳)时变信号的信噪比。基于全球卫星重力系数(例如重力恢复和气候实验(GRACE)和重力和海洋环流探测器(GOCE))的本地化结果表明,可以检测到由2004年苏门答腊-安达曼大地震等大地震引起的同震变形分别在球形度15-30和25-100的带宽内通过低-低跟踪和重量计数据。但是,即使在定位后,通过GOCE梯度仪检测到的地面储水量变化也是模棱两可的。

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