首页> 外文期刊>Pure and Applied Geophysics >Altimetry-derived gravity predictions of bathymetry by the gravity-geologic method
【24h】

Altimetry-derived gravity predictions of bathymetry by the gravity-geologic method

机译:重力-地质方法通过测高法得出的测深重力

获取原文
获取原文并翻译 | 示例
           

摘要

The gravity-geologic method (GGM) was implemented for 2' by 2' bathymetric determinations in a 1.6° longitudeby-1.0° latitude region centered on the eastern end of the Shackleton Fracture Zone in the Drake Passage, Antarctica. The GGM used the Bouguer slab approximation to process satellite altimetry-derived marine free-air gravity anomalies and 6,548 local shipborne bathymetric sounding measurements from the Korea Ocean Research and Development Institute to update the surrounding off-track bathymetry. The limitations of the Bouguer slab for modeling the gravity effects of variable density, rugged bathymetric relief at distances up to several kilometers, were mitigated by establishing 'tuning' densities that stabilized the GGM predictions. Tests using two-thirds of the shipborne bathymetric measurements to estimate the remaining third indicated that the tuning densities minimized root-mean-square deviations to about 29 m. The optimum GGM bathymetry model honoring all the ship observations correlated very well with widely available bathymetry models, despite local differences that ranged up to a few kilometers. The great analytical simplicity of GGM facilitates accurately and efficiently updating bathymetry as new gravity and bathymetric sounding data become available. Furthermore, the availability of marine free-air gravity anomaly data ensures that the GGM is more effective than simply extrapolating or interpolating ship bathymetry coverage into unmapped regions.
机译:在以南极德雷克通道的沙克尔顿断裂带东端为中心的经度1.6°乘以1.0°纬度区域中,通过2'测深法对2'进行了重力地质方法(GGM)。 GGM使用Bouguer平板近似法来处理源自卫星测高仪的海洋自由重力异常和大洋海洋研究与开发研究所的6,548个本地船载测深测深,以更新周围的离地测深。布格板用于建模可变密度的重力效应的局限性,在长达数公里的距离上具有坚固的测深仪,通过建立“调整”密度来稳定GGM预测得以缓解。使用三分之二的船载测深测量值进行测试以估计其余三分之一的测试结果表明,调整密度将均方根偏差最小化到约29 m。尽管有几公里的局部差异,但满足所有船舶观测结果的最佳GGM水深模型与广泛使用的水深模型非常相关。随着新的重力和测深探测数据的出现,GGM极大的分析简便性有助于准确有效地更新测深。此外,海洋自由空气重力异常数据的可用性确保GGM比简单地将航海测深覆盖范围外推或内插到未映射区域更为有效。

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