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A Best-Estimate Approach for Determining Self-potential Parameters Related to Simple Geometric Shaped Structures

机译:确定与简单几何形状结构有关的自势参数的最佳估计方法

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摘要

A new approach is proposed in order to interpret field self-potential (SP) anomalies related to simple geometric-shaped models such as sphere, horizontal cylinder, and vertical cylinder. This approach is mainly based on solving a set of algebraic linear equations, and directed towards the best estimate of the three model parameters, e.g., electric dipole moment, depth, and polarization angle. Its utility and validity are demonstrated through studying and analyzing synthetic self-potential anomalies obtained by using simulated data generated from a known model and a statistical distribution with different random errors components. Being theoretically tested and proven, this approach has been consequently applied on two real field self-potential anomalies taken from Colorado and Turkey. A comparable and acceptable agreement is obtained between the results derived by the new proposed method and those deduced by other interpretation methods. Moreover, the depth obtained by such an approach is found to be very close to that obtained by drilling information.
机译:为了解释与简单几何形状模型(例如球体,水平圆柱体和垂直圆柱体)有关的场自势(SP)异常,提出了一种新方法。该方法主要基于求解一组代数线性方程组,并且针对三个模型参数(例如,电偶极矩,深度和极化角)的最佳估计。通过研究和分析通过使用已知模型生成的模拟数据和具有不同随机误差成分的统计分布获得的合成自势异常,证明了其实用性和有效性。经过理论测试和证明,此方法已应用于从科罗拉多州和土耳其获得的两个实地自势异常。在通过新的提议方法得出的结果与通过其他解释方法得出的结果之间获得了可比且可接受的协议。而且,发现通过这种方法获得的深度与通过钻探信息获得的深度非常接近。

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