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Improved Local Wavenumber Methods in the Interpretation of Potential Field Data

机译:势场数据解释中的改进局部波数方法

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We present two new potential-inversion methods for estimating the depth and the nature (structural index) of the source, which use various combinations of different forms of local wavenumbers and the information about the horizontal location to estimate individually the depth and the nature of a magnetic source. The improved local wavenumber methods only use the horizontal offset and vertical offset of local wavenumbers to estimate the depth and the structural index of the source, so they yield more stable results compared with the results obtained by current methods that require the derivatives of local wavenumbers. Tests conducted with synthetic noise-free and noise-corrupted magnetic data show that the proposed methods can successfully estimate the depth and the nature of the geologic body. However, our methods are sensitive to high-wavenumber noise present in the data, and we reduced the noise effect by upward continuing the noise-corrupted magnetic data. The practical application of the new methods is tested on a real magnetic anomaly over a dike whose source parameters are known and the inversion results are consistent with the true values.
机译:我们提出了两种新的潜在反演方法,用于估算震源的深度和性质(结构指数),它们使用不同形式的局部波数的各种组合以及有关水平位置的信息来分别估算震源的深度和性质。磁源。改进的局部波数方法仅使用局部波数的水平偏移和垂直偏移来估计源的深度和结构指标,因此,与需要局部波数导数的当前方法所获得的结果相比,它们产生的结果更稳定。使用合成无噪声和噪声损坏的磁性数据进行的测试表明,所提出的方法可以成功地估算地质体的深度和性质。但是,我们的方法对数据中存在的高波数噪声很敏感,并且我们通过向上继续破坏了噪声的磁数据来降低了噪声影响。在已知源参数且反演结果与真实值一致的堤坝上的实际磁异常上测试了新方法的实际应用。

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