Migration Methods with Curved Coordinate Systems

Sergio Sanes Negrete, J. C. Muñoz-Cuartas, K. V. van Dongen
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Abstract

Reverse time migration (RTM) is a method developed for performing non-invasive physical imaging. It aims to generate diagnostic images based on forward and backward modeling of waves, which can be solved with different type of techniques. A widely used one is Finite Differences (FD) due to its low computational cost and its simplicity, as compared to other methods, to implement. In this work we show how to implement RTM with curved coordinates using FD. In particular we focus on the application of curved coordinates to improve the quality of the resulting images and reduce the computational cost of RTM. Here, we apply a strategy to curve coordinates during the wave propagation modeling stage for a modified version of the Marmousi model. The results show that it is completely feasible the redistribution of grid nodes to locally improve quality of the migrated models and reduce the number of grid nodes at the same time. We also found that typical issues associated to the imaging condition and FD scheme remain.
弯曲坐标系下的迁移方法
逆时偏移(RTM)是一种用于进行非侵入性物理成像的方法。它的目的是基于波的正向和反向建模来生成诊断图像,这可以通过不同类型的技术来解决。有限差分(FD)是一种广泛使用的方法,因为它的计算成本低,与其他方法相比,它的实现简单。在这项工作中,我们展示了如何使用FD实现具有弯曲坐标的RTM。我们特别关注曲线坐标的应用,以提高结果图像的质量,并减少RTM的计算成本。在这里,我们在波传播建模阶段对修改版本的Marmousi模型应用曲线坐标策略。结果表明,网格节点的重新分配在局部提高迁移模型质量的同时减少网格节点的数量是完全可行的。我们还发现与成像条件和FD方案相关的典型问题仍然存在。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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