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A Fast InterpretationMethod for InverseModeling of Residual Gravity Anomalies Caused by Simple Geometry

机译:一种简单的几何解释残差重力反演的快速解释方法

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摘要

An inversion technique using a fast method is developed to estimate, successively, the depth, the shape factor, and the amplitude coefficient of a buried structure using residual gravity anomalies. By defining the anomaly value at the origin and the anomaly value at different points on the profile, the problem of depth estimation is transformed into a problem of solving a nonlinear equation of the form f (z) = 0. Knowing the depth, the shape factor can be estimated and finally the amplitude coefficient can be estimated. This technique is applicable for a class of geometrically simple anomalous bodies, including the semiinfinite vertical cylinder, the infinitely long horizontal cylinder, and the sphere. The efficiency of this technique is demonstrated with gravity anomaly due to a theoretical model, in each case with and without random errors. Finally, the applicability is illustrated using the residual gravity anomaly of Mobrun ore body, situated near Noranda, QC, Canada. The interpreted depth and the other model parameters are in good agreement with the known actual values.
机译:开发了一种使用快速方法的反演技术,以利用剩余重力异常依次估算埋藏结构的深度,形状因子和振幅系数。通过在轮廓上定义原点处的异常值和不同点处的异常值,深度估计的问题将转化为求解形式为f(z)= 0的非线性方程的问题。知道深度,形状可以估计系数,最后可以估计振幅系数。此技术适用于一类几何上简单的异常物体,包括半无限垂直圆柱,无限长水平圆柱和球体。由于理论模型的原因,重力异常证明了该技术的效率,在每种情况下都存在和不存在随机误差。最后,通过加拿大魁北克省诺兰达附近的莫夫伦矿体的剩余重力异常来说明其适用性。解释的深度和其他模型参数与已知的实际值高度吻合。

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