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Three-Component Forward Modeling for Transient Electromagnetic Method

机译:瞬变电磁法的三分量正演模拟

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In general, the time derivative of vertical magnetic field is considered only in the data interpretation of transient electromagnetic (TEM) method. However, to survey in the complex geology structures, this conventional technique has begun gradually to be unsatisfied with the demand of field exploration. To improve the integrated interpretation precision of TEM, it is necessary to study the three-component forward modeling and inversion. In this paper, a three-component forward algorithm for 2.5D TEM based on the independent electric and magnetic field has been developed. The main advantage of the new scheme is that it can reduce the size of the global system matrix to the utmost extent, that is to say, the present is only one fourth of the conventional algorithm. In order to illustrate the feasibility and usefulness of the present algorithm, several typical geoelectric models of the TEM responses produced by loop sources at air-earth interface are presented. The results of the numerical experiments show that the computation speed of the present scheme is increased obviously and three-component interpretation can get the most out of the collected data, from which we can easily analyze or interpret the space characteristic of the abnormity object more comprehensively.
机译:通常,仅在瞬变电磁(TEM)方法的数据解释中考虑垂直磁场的时间导数。然而,为了在复杂的地质结构中进行勘测,这种常规技术已经开始逐渐不满足于野外勘探的需求。为了提高TEM的综合解释精度,有必要研究三分量正演和反演。本文研究了基于独立电场和磁场的2.5D TEM三分量正演算法。新方案的主要优点是可以最大程度地减小全局系统矩阵的大小,也就是说,目前仅是常规算法的四分之一。为了说明本算法的可行性和实用性,提出了几种典型的地电模型,这些模型是由空地界面上的回路源产生的TEM响应的。数值实验结果表明,该方案的计算速度明显提高,可以从采集到的数据中充分利用三元解释,可以更容易地更全面地分析或解释异常物体的空间特征。 。

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