GUO ChunLing,
CHEN XiaoBin
.2018.Refined processing and two-dimensional inversion of Magnetotelluric (MT) data(VI): Two-dimensional magnetotelluric inversion based on the staggered model Chinese Journal of Geophysics(in Chinese),61(6): 2548-2559,doi: 10.6038/cjg2018K0244
大地电磁资料精细处理和二维反演解释技术研究(六)——交错模型的大地电磁二维反演
郭春玲, 陈小斌
中国地震局地质研究所地震动力学国家重点实验室, 北京 100029
Refined processing and two-dimensional inversion of Magnetotelluric (MT) data(VI): Two-dimensional magnetotelluric inversion based on the staggered model
GUO ChunLing, CHEN XiaoBin
State Key Laboratory of Earthquake Dynamics, Institute of Geology, China Earthquake Administration, Beijing 100029, China
Abstract:The staggered model refers to a combination of several groups of linear structures (approximately two-dimensional) in space (vertical and horizontal directions). For electrical structures, the staggered model is characterized by variations of the geo-electrical strike in longitudinal or transverse directions. From the viewpoint of structural dimension, the staggered model is a special three-dimensional model made up of two-dimensional models, which is not easy to obtain reliable inversion results by two-dimensional Magnetotelluric (MT) inversion directly. Considering such characteristics, a sub-band and sub-segment inversion scheme is proposed in this work, in which the geo-electrical strikes of the linear structures are determined in the frequency domain by means of impedance tensor imaging. Then, the data of the corresponding strikes are selected for different frequency bands and segments, and the inversion results of different strikes are connected to each other through the construction of the initial models. In this paper, the whole process of sub-band and sub-segment inversion is demonstrated by a theoretical three-dimensional model. The results show that the inversion for low frequency band data should be performed at first in sub-band inversion, and in sub-segment inversion the segments with weak two-dimensionality are inverted in advance. This technique is applied to the inversion of a measured profile in the middle and southern sections of the Tanlu fault zone. The result is compared with the conventional two-dimensional inversion results, which shows that the new method permits to reveal more abundant information at depth, consistent with existing geological and geophysical results from previous work. It is shown that the two-dimensional MT inversion of sub-band and sub-segment has higher resolution and reliability in areas with complicated structures.
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