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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >A new formula to compute apparent resistivities from marine magnetometric resistivity data
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A new formula to compute apparent resistivities from marine magnetometric resistivity data

机译:从海洋磁阻率数据计算视电阻率的新公式

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摘要

Magnetometric resistivity (MMR) is an electromagnetic (EM) exploration method that has been used successfully to investigate electrical-resistivity structures below the seafloor. Apparent resistivity, derived from the observed azimuthal component of the magnetic field, often is used as an approximation to the resistivity of a layered earth. Two commonly used formulas to Compute the apparent resistivity have their own limitations and are invalid for a deep-sea experiment. In this paper, we derive an apparent-resistivity formula based upon the magnetic field resulting from a semi-infinite electrode buried in a ID layered earth. This new formula can be applied to both shallow and deep marine MMR surveys. In addition, we address the effects that arise from the transmitter-receiver (Tx-Rx) depth difference and the choice of the normalized range (the radial distance between transmitter and receiver, divided by the thickness of seawater) on data interpretation and survey design. The performance of the new formula is shown by processing synthetic and field data.
机译:磁力计电阻率(MMR)是一种电磁(EM)勘探方法,已成功用于研究海底以下的电阻率结构。由观察到的磁场方位角分量得出的视在电阻率通常用作层状土壤电阻率的近似值。有两个常用的计算视电阻率的公式有其局限性,对于深海实验无效。在本文中,我们基于埋入ID层状地中的半无限电极产生的磁场推导了视在电阻率公式。此新公式可应用于浅海和深海MMR调查。此外,我们还解决了因收发器(Tx-Rx)的深度差以及归一化范围的选择(发射机与接收机之间的径向距离,除以海水的厚度)而对数据解释和勘测设计产生的影响。通过处理合成数据和现场数据可以显示新公式的性能。

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