浅层地下探测的对向线圈瞬变电磁法

XI Zhen-Zhu, LONG Xia, ZHOU Sheng, HUANG Long, SONG Gang, HOU Hai-Tao, WANG Liang
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引用次数: 7

摘要

瞬变电磁法是一种常用的测量瞬变脉冲源产生的二次电磁场的地球物理方法。由于TX线圈和RX线圈之间存在固有的互感,因此测量的场中始终存在互感场,当TX线圈越小、越靠近RX线圈时,互感场越强。它影响了近地表瞬变电磁法系统,该系统利用小TX线圈有效地解决近地表勘探问题。在瞬变电磁法勘探中,早期互感场与二次场的混合导致浅层表面出现盲区。为了解决这一问题,我们在瞬变电磁法系统中采用了两个同心并联电流线圈。它们是相反的线圈,这意味着两个线圈在物理上是相同的,但它们中的电流值相等,方向相反。RX线圈与两个相对线圈的距离相等。通过这种特殊的布置,RX线圈处接收到的互感场为零,即有效地消除了互感效应,测得的是导电地下的纯二次场。理论和模型计算证明了对向线圈瞬变电磁法在横向分辨方面具有优势。它非常适用于针对浅层探测的小线圈瞬变电磁法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
OPPOSING COILS TRANSIENT ELECTROMAGNETIC METHOD FOR SHALLOW SUBSURFACE DETECTION

Transient electromagnetic method (TEM) is a commonly-used geophysical method of measuring the secondary electromagnetic field induced by transient pulse sources. Because of the inherent mutual-induction between TX and RX coils, the measured field always contains the mutual-induction field, which becomes stronger when TX coil becomes smaller and closer to RX coil. It influences the near-surface TEM systems, which utilize small TX coils to effectively resolve the near surface explorations. The mixture of the mutual-induction field with the secondary field at early period leads to a blind region in the shallow surface in TEM exploration. To solve this problem, we applied two concentric and parallel current coils in the TEM system. They are opposing coils, which means that the two coils are physically same, but the currents in them are of equal value and in reverse directions. The RX coil is equidistant to the two opposing coils. By means of this special arrangement, the mutual-induction field received at the RX coil is zero, which means that the mutual induction effect is efficiently eliminated, and pure secondary field of the conductive underground will be measured. It is proved by theory and model calculation that opposing coils transient electromagnetic method has advantages in lateral resolution. It is quite suitable for small coil TEM system aiming at shallow subsurface detection.

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