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Pseudo-remote reference processing of magnetotelluric data: a fast and efficient data acquisition scheme for local arrays

机译:大地电磁数据的伪远程参考处理:本地阵列的快速高效数据采集方案

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摘要

The basic physical properties of the magnetic source field, namely its homogeneity and spatial coherence, have been used for a variety of magnetotelluric processing techniques including remote reference processing. In the present work we propose a data acquisition and processing technique for a large number of stations distributed over a localized area ideally on a grid. For pseudo-remote reference processing it is necessary to use the following station setup: five-component MT data are only measured at some sites (base stations) while at the majority of sites (local stations) only the electric and vertical magnetic fields are recorded. The impedance tensor and vertical magnetic transfer functions at each local station are computed by assigning the magnetic fields of a base station to the local station as if they had been measured there. This approach can lead to biased or erroneous estimates of local transfer functions at stations in the vicinity of strong conductivity contrasts that can be corrected using the interstation transfer functions between the horizontal magnetic fields measured at the base station)s). We test this approach with a data set collected in the vicinity of the Groβ Schoenebeck geothermal test site. Magnetotelluric data were collected at 146 local and 5 base stations distributed over an approximately 5 km × 25 km wide grid with site spacing ranging from 500 m × 500 m to 1000 m × 1000 m in the frequency range 128-0.001Hz. The obtained pseudo-remote reference transfer functions are generally smooth and consistent and conductivity models obtained from 2D inversion of the data are in agreement with previous conductivity models from the study area.
机译:磁场的基本物理特性,即其均匀性和空间相干性,已被用于包括远程参考处理在内的各种大地电磁处理技术。在当前的工作中,我们提出了一种数据采集和处理技术,用于理想地分布在网格上的局部区域上的大量站点。对于伪远程参考处理,必须使用以下站点设置:仅在某些站点(基站)测量五分量MT数据,而在大多数站点(本地站点)仅记录电场和垂直磁场。每个本地站的阻抗张量和垂直磁传递函数是通过将基站的磁场分配给本地站来计算的,就好像它们是在本地站点测量的一样。这种方法可能导致在强电导率对比附近的站点上对局部传递函数的估计有误或错误,可以使用在基站测得的水平磁场之间的站点间传递函数来进行校正。我们使用在GroβSchoenebeck地热测试站点附近收集的数据集来测试这种方法。在分布在大约5 km×25 km宽的网格上的146个本地和5个基站收集了大地电磁数据,站点间隔范围为500 m×500 m至1000 m×1000 m,频率范围为128-0.001Hz。所获得的伪远程参考传递函数通常是平滑且一致的,并且从数据的二维反演获得的电导率模型与研究区域以前的电导率模型一致。

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  • 来源
    《Geophysical Prospecting》 |2013年第1期|300-316|共17页
  • 作者

    G. Munoz; O. Ritter;

  • 作者单位

    Helmholtz Centre Potsdam, German Research Centre for Geosciences GFZ Telegrafenberg, 14473 Potsdam, Germany;

    Helmholtz Centre Potsdam, German Research Centre for Geosciences GFZ Telegrafenberg, 14473 Potsdam, Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Pseudo-remote; Magnetotelluric; Transfer function;

    机译:伪远程大地电磁转换功能;

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