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Marquardt inverse modeling of the residual gravity anomalies due to simple geometric structures: A case study of chromite deposit

机译:由于简单的几何结构引起的残留重力异常的Marquardt逆建模:铬铁矿沉积物的案例研究

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In this paper, an inversion method based on the Marquardta??s algorithm is presented to invert the gravity anomaly of the simple geometric shapes. The inversion outputs are the depth and radius parameters. We investigate three different shapes, i.e. the sphere, infinite horizontal cylinder and semi-infinite vertical cylinder for modeling. The proposed method is used for analyzing the gravity anomalies from assumed models with different initial parameters in all cases as the synthetic data are without noise and also corrupted with noise to evaluate the ability of the procedure. We also employ this approach for modeling the gravity anomaly due to a chromite deposit mass, situated east of Sabzevar, Iran. The lowest error between the theoretical anomaly and computed anomaly from inverted parameters, determine the shape of the causative mass. The inversion using different initial models for the theoretical gravity and also for real gravity data yields approximately consistent solutions. According to the interpreted parameters, the best shape that can imagine for the gravity anomaly source is the vertical cylinder with a depth to top of 7.4 m and a radius of 11.7 m.
机译:本文介绍了一种基于Marquardta的反演方法算法以反转简单几何形状的重力异常。反转输出是深度和半径参数。我们调查三种不同的形状,即球体,无限卧式圆筒和半无限垂直圆柱形建模。所提出的方法用于分析来自假设模型的引力异常,在所有情况下都有不同的初始参数,因为合成数据没有噪声并损坏噪声来评估程序的能力。我们还采用这种方法来建立引起的重力异常,由于铬铁矿沉积物,位于伊朗Sabzevar以东。从反相参数之间理论异常和计算异常之间的最低误差确定了致病质量的形状。使用不同初始模型的反演,用于理论重力,以及实际重力数据产生大致一致的解决方案。根据解释参数,可以想象用于重力异常源的最佳形状是垂直圆筒,深度至7.4米的顶部,半径为11.7米。

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