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3D gravity inversion of basement relief - A depth-dependent density approach

机译:地下室浮雕的3D重力反演-一种与深度有关的密度方法

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摘要

We present a 3D gravity inversion technique, based on the Marquardt algorithm, to analyze gravity anomalies attributable to basement interfaces above which the density contrast varies continuously with depth. The salient feature of this inversion is that the initial depth of the basement is not a required input. The proposed inversion simultaneously estimates the depth of the basement interface and the regional gravity background. Applicability and efficacy of the inversion is demonstrated with a synthetic model of a density interface. We analyze the synthetic gravity anomalies (1) solely because of the structure, (2) in the presence of a regional gravity background, and (3) in the presence of both random noise and regional gravity background. The inverted structure remains more or less the same, regardless of whether the regional background is simulated with a second-degree polynomial or a bilinear equation. The depth of the structure and estimated regional background deviate only modestly from the assumed ones in the presence of random noise and regional background. The analyses of two sets of real field data, one over the Chintalpudi subbasin, India, and another over the Pannonian basin, eastern Austria, yield geologically plausible models with the estimated depths that compare well with drilling data.
机译:我们提出一种基于Marquardt算法的3D重力反演技术,以分析可归因于地下界面的重力异常,在该异常之上,密度对比会随深度连续变化。这种倒转的显着特征是地下室的初始深度不是必需的输入。提出的反演同时估计了地下界面的深度和区域重力背景。通过密度界面的综合模型证明了反演的适用性和有效性。我们分析合成重力异常(1)仅由于其结构;(2)在存在区域重力背景的情况下,以及(3)在存在随机噪声和区域重力背景的情况下。不管区域背景是用二次多项式还是双线性方程式模拟的,倒置结构都大致相同。在存在随机噪声和区域背景的情况下,结构的深度和估计的区域背景仅与假定的略有不同。对两套实地数据的分析,一种是在印度的Chintalpudi盆地上,另一种是在奥地利东部的Pannonian盆地上,得出的地质学模型合理,其估计深度与钻探数据具有很好的可比性。

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