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The New AFRGDB_V2.2 Gravity Database for Africa

机译:非洲的新AFRGDB_V2.2重力数据库

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The primary task of the IAG Sub-Commission on Gravity and Geoid in Africa is the development of the vertical reference surface (the geoid) for the entire African continent. For the practical solution of this boundary value problem, the available, arbitrarily distributed boundary data (gravity values) must be interpolated onto a regular grid for numerical reasons. In this paper it is explained in detail how to create this grid from the irregularly distributed point-gravity data. It is worth mentioning that this gravity database is not only used for geoid computation; it is also a stand-alone product used in earth sciences, as it reflects interesting geophysical signals. The gravity data available in this project are land and shipborne point gravity values as well as altimetry-derived gravity anomaly data. One challenge of preparing the homogeneous grid of gravity anomalies is caused by the inhomogeneous distribution of the observations and a lot of data gaps, especially on land. At these data gaps, gravity anomalies are provided on a so-called underlying grid from the GOCE DIR_R5 global reference model. One challenge in the framework of the least-squares prediction technique used is the determination of an empirical covariance function representing the behaviour of the irregularly distributed data points and the individual weights of the land, shipborne, and altimetry data and the underlying grid entering the process. A sophisticated filtering of the available gravity data is carried out to meet this challenge. The preprocessed data from the remove step are predicted to an equiangular 5 ' x5 ' grid. Finally, a consistent restore step leads to the AFRGDB_V2.2 gravity database. The precision of the developed gravity database has been studied to assess the quality of the new product. The new AFRGDB_V2.2 gravity database is compared to the preceding one (AFRGDB_V2.0), which was generated using the window remove-restore technique.
机译:IAG在非洲重力和大地区委员会的主要任务是整个非洲大陆的垂直参考表面(大地带)的发展。对于该边界值问题的实际解决方案,必须以数字原因内插在常规网格上的可用,任意分布的边界数据(重力值)。在本文中,详细解释了如何从不规则分布的点重力数据创建该网格。值得一提的是,这种重力数据库不仅用于大木桥计算;它也是地球科学中使用的独立产品,因为它反映了有趣的地球物理信号。该项目中可用的重力数据是土地和船舶重量重量值以及高度偏转的重力异常数据。制备重心异常的均匀网格的一个挑战是由观察结果的不均匀分布和大量数据差距,特别是在土地上引起的。在这些数据间隙中,来自Goce Dir_R5全局参考模型的所谓底层网格上提供重力异常。所使用的最小二乘预测技术的框架中的一个挑战是确定代表不规则分布的数据点的行为的经验协方差函数和土地,船载和高级数据的各个重量以及进入该过程的底层网格。进行了复杂的可用重力数据的过滤以满足这一挑战。从删除步骤预处理的数据预测到等方5'X5'网格。最后,一致的恢复步骤导致AFRGDB_V2.2重力数据库。已经研究了发达的重力数据库的精度来评估新产品的质量。将新的AFRGDB_V2.2重力数据库与前一(agrgdb_v2.0)进行比较,使用窗口删除恢复技术生成。

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