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Topography of the Moho and earth crust structure beneath the East Vietnam Sea from 3D inversion of gravity field data

机译:从重力场数据的3D反演看东越海下Moho和地壳结构的地形

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摘要

The Moho depth, crustal thickness and fault systems of the East Vietnam Sea (EVS) are determined by 3D interpretation of satellite gravity. The Moho depth is calculated by 3D Parker inversion from residual gravity anomaly that is obtained by removing the gravity effects of seafloor and Pre-Cenozoic sediment basement topographies from the free air anomaly. The 3D inversion solution is constrained by power density spectrum of gravity anomaly and seismic data. The calculated Moho depths in the EVS vary from 30-31 km near the coast to 9 km in the Central Basin. A map of the lithosphere extension factor in the Cenozoic is constructed from Moho and Pre-Cenozoic sediment basement depths. The fault systems constructed by the maximum horizontal gradient approach include NE-SW, NW-SE, and N-S oriented faults. Based on the interpretation results, the EVS is sub-divided into five structural zones which demonstrated the different characteristics of the crustal structure.
机译:东越南海(EVS)的莫霍面深度,地壳厚度和断层系统由卫星重力的3D解释确定。 Moho深度是通过3D Parker反演从残余重力异常中计算得出的,该残余重力异常是通过从自由空气异常中去除海底和前新生代沉积物地下室地形的重力效应而获得的。 3D反演解决方案受到重力异常的功率密度谱和地震数据的约束。 EVS中计算出的莫霍面深度从海岸附近的30-31 km到中央盆地的9 km不等。根据莫霍面和前新生代沉积物基底深度,绘制了新生代岩石圈扩展因子图。通过最大水平梯度法构造的故障系统包括NE-SW,NW-SE和N-S定向断层。根据解释结果,EVS被细分为五个结构区域,这些区域显示了地壳结构的不同特征。

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