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Space-wise, time-wise, torus and Rosborough representations in gravity field modelling

机译:重力场建模中的空间,时间,圆环和Rosborough表示

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摘要

The decade of the geopotentials started July 2000 with the launch of the German high-low SST mission CHAMP. Together with the joint NASA-DLR low-low SST mission GRACE and the ESA gradiometry mission GOCE an unprecedented wealth of geopotential data becomes available over the next few years. Due to the sheer number of unknown gravity field parameters (up to 100 000) and of observations (millions), especially the latter two missions are highly demanding in terms of computational requirements. In this paper several modelling strategies are presented that are based on a semi-analytical approach. In this approach the set of normal equations becomes block-diagonal with maximum block-sizes smaller than the spherical harmonic degree of resolution. The block-diagonality leads to a rapid and powerful gravity field analysis tool. Beyond the more-or-less conventional space-wise and time-wise formulations, the torus approach and Rosborough's representation are discussed. A trade-off between pros and cons of each of the modelling strategies will be given. [References: 12]
机译:随着德国高-低SST任务CHAMP的发射,地电位的十年开始于2000年7月。与NASA-DLR的低-低SST联合任务GRACE和ESA梯度测量任务GOCE一起,在未来几年中将获得空前丰富的地势数据。由于未知的重力场参数(多达10万个)和观测值(数百万个)的数量庞大,特别是后两个任务在计算需求方面要求很高。在本文中,提出了几种基于半分析方法的建模策略。在这种方法中,一组正态方程变为块对角线,且最大块大小小于球形谐波分辨率。块对角线导致了快速而强大的重力场分析工具。除了或多或少的常规时空和时空公式外,还讨论了圆环法和罗斯伯勒的表示法。将在每种建模策略的利弊之间做出权衡。 [参考:12]

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