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首页> 外文期刊>Pure and Applied Geophysics >Fair Function Minimization for Direct Interpretation of Residual Gravity Anomaly Profiles Due to Spheres and Cylinders
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Fair Function Minimization for Direct Interpretation of Residual Gravity Anomaly Profiles Due to Spheres and Cylinders

机译:公平函数最小化,用于直接解释由于球体和圆柱体引起的残余重力异常轮廓

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摘要

A new interpretative approach is proposed to interpret residual gravity anomaly profiles in order to determine the depth, the amplitude coefficient and the geometric shape factor of simple spherical and cylindrical buried structures. This new approach is based on both Fair function minimization and on stochastic optimization modeling. The validity of this interpretative approach is demonstrated through studying and analyzing two synthetic gravity anomalies, using simulated data generated from a known model with different random noises components and a known statistical distribution. Being theoretically proven, this new approach has been applied on three real field gravity anomalies from Sweden, Senegal and the United States. The agreement between the results obtained by the proposed method and those obtained by other interpretation methods is good and comparable.
机译:提出了一种新的解释方法来解释残余重力异常剖面,以确定简单的球形和圆柱形掩埋结构的深度,振幅系数和几何形状因子。这种新方法既基于公平函数最小化,也基于随机优化建模。通过使用具有不同随机噪声成分和已知统计分布的已知模型生成的模拟数据,通过研究和分析两个合成重力异常,证明了这种解释方法的有效性。经过理论验证,此新方法已应用于瑞典,塞内加尔和美国的三个实际场重力异常。通过所提出的方法获得的结果与通过其他解释方法获得的结果之间的一致性是良好且可比较的。

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