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首页> 外文期刊>Pure and Applied Geophysics >Estimation of Gravity Parameters Related to Simple Geometrical Structures by Developing an Approach Based on Deconvolution and Linear Optimization Techniques
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Estimation of Gravity Parameters Related to Simple Geometrical Structures by Developing an Approach Based on Deconvolution and Linear Optimization Techniques

机译:通过开发基于反卷积和线性优化技术的方法来估计与简单几何结构有关的重力参数

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摘要

An easy and practical method for interpreting residual gravity anomalies due to simple geometrically shaped models such as cylinders and spheres has been proposed in this paper. This proposed method is based on both the deconvolution technique and the simplex algorithm for linear optimization to most effectively estimate the model parameters, e.g., the depth from the surface to the center of a buried structure (sphere or horizontal cylinder) or the depth from the surface to the top of a buried object (vertical cylinder), and the amplitude coefficient from the residual gravity anomaly profile. The method was tested on synthetic data sets corrupted by different white Gaussian random noise levels to demonstrate the capability and reliability of the method. The results acquired show that the estimated parameter values derived by this proposed method are close to the assumed true parameter values. The validity of this method is also demonstrated using real field residual gravity anomalies from Cuba and Sweden. Comparable and acceptable agreement is shown between the results derived by this method and those derived from real field data.
机译:本文提出了一种简单实用的方法来解释由于简单的几何形状模型(例如圆柱体和球体)而引起的剩余重力异常。该提议的方法基于反卷积技术和单纯形算法进行线性优化,以最有效地估计模型参数,例如,从埋入结构的表面到中心(球体或水平圆柱体)的深度或从埋入结构的表面到中心的深度表面到埋藏物体(垂直圆柱)的顶部,以及来自剩余重力异常剖面的振幅系数。在不同白高斯随机噪声水平破坏的合成数据集上测试了该方法,以证明该方法的功能和可靠性。所获得的结果表明,通过该方法得出的估计参数值接近于假定的真实参数值。古巴和瑞典的实地残余重力异常也证明了这种方法的有效性。通过这种方法得出的结果与从实际数据得出的结果之间具有可比性和可接受的一致性。

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