首页> 外文期刊>Surveys in Geophysics: An International Review Journal of Geophysics and Planetary Sciences >Combined Regional Gravity Model of the Andean Convergent Subduction Zone and Its Application to Crustal Density Modelling in Active Plate Margins
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Combined Regional Gravity Model of the Andean Convergent Subduction Zone and Its Application to Crustal Density Modelling in Active Plate Margins

机译:安第斯收敛俯冲带组合区域重力模型及其在活动板块边缘地壳密度模拟中的应用

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摘要

The Central Andean subduction system is one of the most active geological structures on Earth. Although there have been a few previous studies, the structure and dynamics of the system are still not well understood. In the present study, we determine a combined regional gravity model of the Andean convergent subduction region for constraining lithospheric models. After a thorough validation and cleaning of the terrestrial gravity and height databases, the method of Least Squares Collocation was applied to consistently combine terrestrial and satellite gravity data, putting much emphasis on the stochastic modelling of the individual data components. As a result, we computed the first high-resolution regional gravity model of the study region that includes GOCE satellite gravity information. The inclusion of GOCE is an essential distinction from the independent global gravity model EGM2008. Validation against EGM2008 reveals that our regional solution is very consistent in regions where terrestrial gravity data are available, but shows systematic differences in areas with terrestrial data gaps. Artefacts in the EGM2008 of up to 150 mGal could be identified. The new combined regional model benefits from the very homogeneous error characteristics and accuracy of GOCE gravity data in the long-to-medium wavelengths down to 80-100 km. Reliable density modelling became possible also in the region of Central Andes, which lacks terrestrial gravity data. Finally, density models were adapted to fit the new regional gravity field solution. The results clearly demonstrate the capabilities of GOCE to better constrain lithospheric models.
机译:安第斯中部俯冲系统是地球上最活跃的地质构造之一。尽管以前已经进行了一些研究,但是系统的结构和动力学仍然不甚了解。在本研究中,我们确定了安第斯收敛俯冲区的组合区域重力模型,以约束岩石圈模型。在对地面重力和高度数据库进行了彻底的验证和清理之后,采用最小二乘配置方法将地面和卫星重力数据一致地组合在一起,从而非常重视单个数据分量的随机建模。结果,我们计算了包含GOCE卫星重力信息的研究区域的第一个高分辨率区域重力模型。包含GOCE是与独立的全球重力模型EGM2008的本质区别。根据EGM2008进行的验证表明,在可获得地面重力数据的区域中,我们的区域解决方案非常一致,但显示出在具有地面数据缺口的区域中存在系统差异。在EGM2008中可以识别出高达150 mGal的伪像。新的组合区域模型得益于GOCE重力数据非常均匀的误差特性和精确度,适用于长达80至100 km的中长波长。在缺少地面重力数据的中部安第斯山脉地区,可靠的密度建模也成为可能。最后,对密度模型进行了调整以适应新的区域重力场解决方案。结果清楚地证明了GOCE更好地约束岩石圈模型的能力。

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