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Use of Walsh transforms in estimation of depths of idealized sources from total-field magnetic anomalies

机译:使用沃尔什变换从全场磁异常估计理想源的深度

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We developed a scheme to compute the depths of four idealized magnetized sources, viz., a monopole, a line of monopoles, a dipole and a line of dipoles from the Walsh spectra of the total-field magnetic anomalies. The sequency numbers, l_(max) corresponding to the peaks of the differential energy density spectra over these sources are practically independent of the shape of the observed anomaly and are linearly dependent on the source depths. For each model, we derived a quantitative relation between the depth and the sequency number l_(max). Analyses of simulated data over idealized isolated sources reveal that (ⅰ) a profile length of about 8 times the source depth provides accurate value in computed depth; (ⅱ) data spacing of less than one-fourth the source depth has no significant error in depth computation and (ⅲ) the technique is capable of tolerating random error to the tune of 10% of the peak amplitude of the simulated anomaly. We compared the results of depth estimations from Walsh and Fourier spectra. Analysis of total-field magnetic anomalies over a buried water supply pipe has demonstrated the applicability of the proposed method.
机译:我们开发了一种方案,可以根据总磁场磁异常的沃尔什谱来计算四个理想化磁化源的深度,即单极,单极线,偶极和偶极线。与这些源上的差分能量密度谱的峰值相对应的序列数l_(max)实际上与所观察到的异常的形状无关,并且与源深度呈线性关系。对于每个模型,我们得出了深度与序列号l_(max)之间的定量关系。对理想隔离源的模拟数据分析表明:(ⅰ)剖面长度约为源深度的8倍,可以提供计算深度的准确值; (ⅱ)数据间隔小于源深度的四分之一,在深度计算中没有明显的误差,并且(ⅲ)该技术能够将随机误差容忍为模拟异常的峰值幅度的10%。我们比较了Walsh和Fourier光谱的深度估计结果。对埋地给水管道上的全场磁异常的分析证明了该方法的适用性。

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