估算磁源深度和结构指数的多尺度成像新方法

GEOPHYSICS Pub Date : 2024-05-15 DOI:10.1190/geo2022-0674.1
Yanguo Wang, Ye Tian, Juzhi Deng
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摘要

确定磁源参数的快速自动技术通常用于解释磁数据。本文提出了一种基于不同高度磁异常任意阶解析信号的磁源参数估计新方法。新方法基于磁源的位置、深度和结构指数与解析信号表达式之间的关系,利用高度 z 和深度缩放因子 β 建立了一种新的多尺度成像方法,称为可变深度镜像(VDMI),其极值点与磁源参数相关。根据两个不同 β 的 VDMI 截面峰值的垂直位置,给出了两个方程来计算源深度和结构指数。由于该方法基于向上延续的磁异常,因此具有稳定性,可直接应用于噪声异常或高阶导数。此外,该方法还具有灵活性,我们可以根据需要选择不同的 β。此外,该方法还可用于多源情况,并可同时估算每个源的深度和结构指数。该方法在无噪声和噪声干扰的合成磁异常上进行了测试。在所有情况下,VDMI 方法都能有效地估算源的深度和结构指数。VDMI 方法还应用于埃及 Hamrawien 地区的实际航空磁数据和中国黑龙江省内北农场的地面磁数据。
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A new multiscale imaging method for estimating the depth and structural index of magnetic source
The fast automatic technique for determining the source parameter is very commonly used to interpret magnetic data. A new method is proposed to estimate the magnetic source parameter based on the any order analytic signals of magnetic anomalies at different altitudes. The new method is based on the relationship between the location, depth and structural index of the source and the expressions of analytic signals, and employs the altitude z and a depth scaling factor β to establish a new multiscale imaging method called Variable Depth Mirror Imaging (VDMI), whose extreme points are related to the source parameters. Two equations are given to calculate the source depth and structural index on the basis of the vertical positions of the peaks of VDMI sections with two different β. Moreover, a series of solutions of source parameters will be obtained when a number of β are selected, which can make the results more reasonable. The method is stable and can be directly applied to noisy anomalies or high-order derivatives because it is based on magnetic anomalies of upward continuation. In addition, the method is flexible as we can select different β as desired. Moreover, the method can be applied to multisource cases, and can simultaneously estimate the depth and structural index for each source. The method was tested on noise-free and noise-corrupted synthetic magnetic anomalies. In all cases, the VDMI method effectively estimates the depths and structural indices of the sources. The VDMI method was also applied to real aeromagnetic data from the Hamrawien area, Egypt, and ground magnetic data over Neibei Farm of Heilongjiang Province, China.
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