测绘学报

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总强度磁异常各阶垂向导数换算新方法

翟国君1,卞光浪2,黄谟涛3   

  1. 1. 海军海洋测绘研究所
    2. 海军海洋测绘研究所;海军大连舰艇学院
    3. 天津海洋测绘研究所
  • 收稿日期:2010-12-28 修回日期:2011-03-01 出版日期:2011-12-25 发布日期:2011-12-25
  • 通讯作者: 翟国君

A new method to calculate the vertical derivatives of total field magnetic anomaly

2, 2   

  • Received:2010-12-28 Revised:2011-03-01 Online:2011-12-25 Published:2011-12-25

摘要: 磁异常垂直导数换算在磁性目标解释推断过程中具有重要意义。分析了总强度磁异常各阶垂向导数频率转换因子的滤波特性,指出常规傅立叶变换法在求解总强度磁异常各阶垂向导数时,观测数据中高频噪声会显著放大,甚至会淹没掉真实信息。从理论上证明了总强度磁异常沿垂直方向的积分和各阶导数均为调和函数,在此基础上,提出联合采用空间域和频率域运算求解其沿垂直方向的各阶导数。该方法的基本思路是:利用频率域转换关系,计算平面上总强度磁异常沿垂直方向的积分值;选择三点二阶中心差分或双三次样条曲线函数法计算总强度磁异常垂向积分值沿水平方向的二阶导数;最后将二阶水平导数代入拉普拉斯方程求解出总强度磁异常的垂向一阶导数;以总强度磁异常及其垂向一阶导数沿水平方向的二阶导数为基础,结合拉普拉斯方程,可进一步求解出总强度磁异常任意阶垂向导数。同时,为了研究提出方法的有效性,采用球体磁场模型进行验证,并首次推导了地磁场方向和磁化强度方向不一致时,球体总强度磁异常沿垂直方向的一阶和二阶导数表达式。经研究表明:提出的方法换算得到的垂向导数结果精度明显优于常规傅立叶变换法换算结果,且具有较强的抗噪能力,尤其是在计算高阶导数时效果更加明显。

Abstract: The vertical derivatives of the total field magnetic anomaly (TMA) plays an important role in the interpretation process of magnetic objects. Owing to the filter characteristic of vertical derivative operator, the conversion of vertical derivative is inherently unstable and any high-frequency noise present in the surveying data gets strongly magnified in the transformed map in such a way to mask any useful signal. Based on the harmonic properties of the vertical integral and derivatives of TMA which are confirmed theoretically in this paper, an algorithm is presented to perform calculation of vertical derivatives using both frequency and space domain transformations. The algorithm involves following steps: vertically integrating the field by using a frequency domain operator; and then, according to the Laplace equation, computing its second vertical derivative by means of the sum of its second horizontal derivatives which is approximated with three-point finite-differences or bicubic splines method; finally, all the other vertical derivatives are again computed by the Laplace equation starting from the TMA (even derivatives) and its first vertical derivative (odd derivatives). The effectiveness of the suggested techniques had been illustrated by synthetic sphere magnetic model whose total field magnetic anomaly’s first and second vertical derivative expressions are deduced for the first time when the geomagnetic direction is different from magnetization direction. The conclusion indicates that the presented vertical derivatives calculation method provides better results and allows a lower degrading of the signal-to-noise ratio than the standard Fourier method, especially when the order of computed derivatives increases, as the vertical integration filter is a smoothing filter.