...
首页> 外文期刊>Pure and Applied Geophysics >Regional Gravity Field Model of Egypt Based on Satellite and Terrestrial Data
【24h】

Regional Gravity Field Model of Egypt Based on Satellite and Terrestrial Data

机译:基于卫星和地面数据的埃及区域重力场模型

获取原文
获取原文并翻译 | 示例
           

摘要

This study presents a recent combined regional gravity field model over Egypt, developed by integrating satellite and terrestrial data via applying the remove-compute-restore (RCR) principle and the least-squares collocation (LSC) procedure. A high-resolution digital terrain model was exploited for the computation of the terrain and residual terrain corrections. Hereby, all the signals that can be modelled or deterministically computed are considered known and then removed in order to reduce the order of magnitude of the input gravity data prior to applying the LSC. Several GOCE-only and combined global geopotential models (GGMs) have been thoroughly investigated with respect to the EGM2008, in which the space-wise (SPW) solution, namely the SPW-R5 model, demonstrated the best performance. For the development of the combined model, the SPW-R5 GGM has been integrated with both the EGM2008 GGM and the terrestrial data retrieved from 56,250 gravity stations of the Getech data, acquired in the framework of the African Gravity Project. The combined regional gravity model was compared to the state-of-art XGM2016 global gravity model. The standard deviation of the differences is 18.0 mGal in terms of Bouguer anomalies. The combined regional model fits well with the terrestrial gravity data along the chosen North-South oriented profile through the Nile Delta region. The improvements of the developed combined regional model over the XGM2016 are due to the use of a more extensive terrestrial dataset. In conclusion, our model is more suitable than solely using the ground data or GGMs for regional density modelling over Egypt. As an example, the comparison of using a global or regionally defined gravity model with the forward gravity modelling based on Saleh (Acta Geodaetica et Geophysica Hungarica 47(4):402-429, 2012) density model is performed.
机译:本研究介绍了通过应用删除计算恢复(RCR)原理和最小二乘搭配(LSC)程序而通过集成卫星和地面数据而开发的埃及最近的埃及地区重力场模型。利用高分辨率的数字地形模型来计算地形和残留地形校正。由此,可以被认为可以建模或确定地计算的所有信号被认为是已知的,然后除去以便在应用LSC之前减小输入重力数据的大小。对于EGM2008,已经彻底研究了几种衰竭和组合的全局地球势模型(GGMS),其中空天(SPW)解决方案,即SPW-R5模型,表现出最佳性能。对于组合模型的开发,SPW-R5 GGM已经与EGM2008 GGM和从Getech数据的56,250重力站中检索的陆地数据集成在非洲重力项目的框架中。将组合的区域重力模型与最先进的XGM2016全局重力模型进行了比较。差异的标准偏差是Bouguer异常方面的18.0 mgal。合并的区域模型与沿着尼罗三角洲地区的选定南北面向南北型材的地面重力数据相适合。在XGM2016上发达的结合区域模型的改进是由于使用更广泛的地面数据集。总之,我们的模型比仅使用埃及地区密度建模的地面数据或GGM更适合。作为示例,使用基于Saleh的前向重力建模使用全局或区域定义的重力模型(Acta Geodaetica Et Geophysica Hungarica 47(4):402-429,2012)密度模型。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号