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Improved normalized full-gradient method and its application to the location of source body

机译:改进的归一化全梯度法及其在源体定位中的应用

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The normalized full-gradient (NFG) method is useful for estimating the source position in semi-quantitative gravity interpretations. Several studies using the NFG method to recover source parameters have shown that this method can reliably locate sources but in practice it is difficult to choose the optimal number of harmonics to act as a smooth filter. In this study, a versatile method was developed for determining the optimal number of harmonics for the NFG method. The optimum harmonic number is determined by analyzing two combined curves: the energy ratio curve of the reconstructed anomalies and the depth curve, along with the change in the number of harmonics. This method was tested and compared with the conventional method on synthetic models, with satisfactory results. When applied to real data from a gravity profile normal to the mid-point of an elongated salt wall in the Mississippi Salt Basin, the estimated source position was consistent with seismic information and previous studies. (C) 2014 Elsevier B.V. All rights reserved.
机译:归一化全梯度(NFG)方法可用于估计半定量重力解释中的源位置。使用NFG方法恢复源参数的多项研究表明,该方法可以可靠地定位源,但是在实践中,很难选择最佳谐波次数来充当平滑滤波器。在这项研究中,开发了一种通用方法来确定NFG方法的最佳谐波数。最佳谐波数是通过分析两条组合曲线来确定的:重构异常的能量比曲线和深度曲线,以及谐波数的变化。测试了该方法并将其与常规方法在合成模型上进行比较,结果令人满意。将其应用于垂直于密西西比盐盆地中细长盐壁中点的重力剖面的真实数据时,估计的震源位置与地震信息和先前的研究一致。 (C)2014 Elsevier B.V.保留所有权利。

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