利用 TFEM 计算和应用频域中的表观电阻率

IF 0.7 4区 地球科学 Q4 GEOCHEMISTRY & GEOPHYSICS Applied Geophysics Pub Date : 2024-04-18 DOI:10.1007/s11770-024-1081-z
Zhu-Qiang Li, Guo-Qiang Fu, Shao-Quan Tan, Xue-Guo Chen, Tao Guo, Peng Xiang, Yong-Hong Yang, Zhan-Xiang He
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引用次数: 0

摘要

时频电磁法(TFEM)是一种应用于油气勘探的可控源电磁法。在传统的 TFEM 方法中,电场的振幅和相位被用来校正频域数据。它还包含观测系统的参数信息,因此直接校正数据具有挑战性,影响了数据处理的效率和精度。本研究引入了由水平电流场源定义的广义视电阻率,并结合 TFEM 发射器和观测系统的特性,获得了 TFEM 在频域中的视电阻率。通过分析偏移和发射距离等主要观测参数的电场幅值和视电阻率特性,验证了所提方法的可行性。TFEM 频域视电阻率的计算和基于该模型的研究为 TFEM 勘探设计和数据处理提供了科学参考。
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Calculation and Application of Apparent Resistivity in the Frequency Domain by TFEM

The time-frequency electromagnetic method (TFEM) is a controllable source electromagnetic method applied to oil and gas exploration. In traditional TFEM, the amplitude and phase of the electric field are used to correct the data in the frequency domain. It also contains information about the parameters of the observation system; therefore, it is challenging to directly correct the data, which affects the efficiency and precision of data processing. This study introduces the generalized apparent resistivity defined by the horizontal current field source and obtains the apparent resistivity in the frequency domain of a TFEM by combining the characteristics of the TFEM emitter and an observation system. The feasibility of the proposed method was verified by analyzing the characteristics of the electric field amplitude and apparent resistivity of the primary observation parameters, such as the offset and launch distance. The calculation of apparent resistivity in the frequency domain of TFEM and research based on the model provide scientific references for the design of TFEM exploration and data processing.

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来源期刊
Applied Geophysics
Applied Geophysics 地学-地球化学与地球物理
CiteScore
1.50
自引率
14.30%
发文量
912
审稿时长
2 months
期刊介绍: The journal is designed to provide an academic realm for a broad blend of academic and industry papers to promote rapid communication and exchange of ideas between Chinese and world-wide geophysicists. The publication covers the applications of geoscience, geophysics, and related disciplines in the fields of energy, resources, environment, disaster, engineering, information, military, and surveying.
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