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Analysis of Primary Field Shielding Stability for the Weak Coupling Coil Designs

机译:弱耦合线圈设计的主场屏蔽稳定性分析

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摘要

As an electromagnetic field conversion tool in the transient electromagnetic method (TEM), the weak coupling coils reduce the mutual inductance of its transmitter and receiver coils by special structural optimization, so the detection signal can be protruded from the primary field interference generated by the transmitter coil; thus, this kind of coil design can significantly improve the signal-to-noise ratio. However, with the popularity of drag or aerial TEM exploration, the structural stability problem caused by bumps or windage leads to non-negligible primary field leakages, thereby reducing the detection reliability. This paper incorporates the primary field shielding stability as a key indicator of the weak coupling designs and proposes a calibration scheme for this stability assessment, based on which the shielding stability of five typical weak coupling coil designs is quantitatively compared, and the relationship between the primary field density and the shielding stability explored in this study may contribute to the selection and improvement of TEM coils.
机译:作为瞬态电磁法(TEM)中的电磁场转换工具,弱耦合线圈通过特殊的结构优化来减小其发射器和接收器线圈的互感,因此检测信号可以从发射器产生的初级场干扰中突出来线圈因此,这种线圈设计可以显着提高信噪比。然而,随着阻力或空中TEM勘探的普及,由隆起或风阻引起的结构稳定性问题导致不可忽略的主场泄漏,从而降低了检测的可靠性。本文将初级磁场屏蔽稳定性作为弱耦合设计的关键指标,并提出了用于该稳定性评估的校准方案,在此基础上,定量比较了五个典型的弱耦合线圈设计的屏蔽稳定性,以及初级耦合之间的关系。在这项研究中探讨的磁场密度和屏蔽稳定性可能有助于TEM线圈的选择和改进。

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