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2D forward modeling of marine Controlled Source Electromagnetic (CSEM) data for salt-dome and stratigraphy trap reservoir

机译:盐丘和地层圈闭油藏海洋控制源电磁(CSEM)数据的二维正演模拟

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摘要

The main elements of hydrocarbon saturated reservoirs are identified by using various geological survey techniques. For many years, marine Controlled Source Electromagnetic (CSEM) method is effectively being used for detection and observation of hydrocarbon reserves, either in shallow or deep water exploration. In this paper, 2D forward modeling is used to study electromagnetic (EM) field behavior in salt dome trap reservoir and stratigraphy trap reservoir. In this paper, we employs 2D forward modeling algorithm using finite difference (FD) method and finite element (FE) method to solve EM-field governing equations. The solution is achieved through i) applying staggered scheme for FD method, and ii) Galerkin scheme for Finite Element (FE) method. Both schemes used the optimal grid technique that extends the boundaries of the mesh outward from the region of interest using a minimal number of nodes, and direct matrix solution technique that allows for simultaneous solution for all sources. Results obtained for salt dome trap and stratigraphy trap shows the discrimination of EM signal for reservoir filled with hydrocarbon and without hydrocarbon. The obtained results can be used to verify the inversion of marine CSEM data.
机译:油气饱和储层的主要元素是通过各种地质调查技术确定的。多年来,在浅水或深水勘探中,海洋可控源电磁(CSEM)方法一直有效地用于检测和观测碳氢化合物储量。本文采用二维正演模型研究了盐丘圈闭储层和地层圈闭储层中的电磁场行为。在本文中,我们采用有限差分(FD)方法和有限元(FE)方法的二维正向建模算法来求解EM场控制方程。该解决方案是通过以下方法实现的:i)将交错方法用于FD方法,以及ii)Galerkin方案用于有限元(FE)方法。两种方案都使用了最佳网格技术,该技术使用最少数量的节点从感兴趣区域向外扩展了网格的边界,并使用了直接矩阵求解技术,允许同时求解所有源。盐丘阱和地层阱获得的结果表明,对于充满烃而没有烃的储层,EM信号的判别。获得的结果可用于验证海洋CSEM数据的反演。

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