ISSN 1004-4140
CN 11-3017/P
孔雪, 胡秋媛, 刘丹, 王巍, 杨建磊, 李萧. 逆时偏移与Kirchhoff偏移的抽道集对比研究[J]. CT理论与应用研究, 2016, 25(5): 507-514. DOI: 10.15953/j.1004-4140.2016.25.05.01
引用本文: 孔雪, 胡秋媛, 刘丹, 王巍, 杨建磊, 李萧. 逆时偏移与Kirchhoff偏移的抽道集对比研究[J]. CT理论与应用研究, 2016, 25(5): 507-514. DOI: 10.15953/j.1004-4140.2016.25.05.01
KONG Xue, HU Qiu-yuan, LIU Dan, WANG Wei, YANG Jian-lei, LI Xiao. Research on RTM and Kirchhoff Migration Gathering[J]. CT Theory and Applications, 2016, 25(5): 507-514. DOI: 10.15953/j.1004-4140.2016.25.05.01
Citation: KONG Xue, HU Qiu-yuan, LIU Dan, WANG Wei, YANG Jian-lei, LI Xiao. Research on RTM and Kirchhoff Migration Gathering[J]. CT Theory and Applications, 2016, 25(5): 507-514. DOI: 10.15953/j.1004-4140.2016.25.05.01

逆时偏移与Kirchhoff偏移的抽道集对比研究

Research on RTM and Kirchhoff Migration Gathering

  • 摘要: 共成像点道集(CIG)可用于速度建模、偏移质量控制以及地下属性解释等。对于复杂碳酸盐岩储层,叠前AVO反演技术在储层识别、裂缝预测和流体检测方面的作用日益显著,叠前反演的精度很大程度上依赖于共成像点道集的AVO特性是否符合地下介质的真实地震响应。因此,叠前偏移不仅要实现反射点的准确归位,还必须得到振幅保真的共成像点道集,从而为AVO/AVA反演提供保幅的共成像点道集输入数据。本文在理论上对真振幅Kirchhoff叠前深度偏移和逆时偏移(RTM)抽道集技术的保幅性进行分析:真振幅Kirchhoff偏移抽道集通过改变加权函数实现振幅保持,仅适用于横向速度变化不大的情况;基于双程波动方程的逆时偏移采用互相关成像条件抽取共成像点道集,成像精确且无倾角限制,相对保幅性优于前者,适应任意复杂速度模型。模型和实例测试结果表明:在简单构造区域,真振幅Kirchhoff保幅叠前深度偏移与保幅逆时偏移抽取的共成像点道集都能起到良好的保幅效果;但在复杂构造区,基于逆时偏移抽取的共成像点道集,保留了全部波场的路径与振幅信息,其保幅性与成像精度优于Kirchhoff保幅叠前深度偏移。因此,针对探区的复杂程度差别及勘探精度的不同要求,应选择不同的抽道集方法,保证振幅精度的同时,兼顾生产效率。

     

    Abstract: Common Imaging gather(CIG) can be used to velocity modeling, migration quality control, subsurface attribute interpretation and so on. Prestack AVO inversion is valuable for reservoir characterization, fracture prediction and fluid detection on complicate carbonate reservoir. However, the accuracy of AVO inversion relies on the amplitude information of CIG to a large extent. Therefore, Prestack migration should not only image reflectors correctly but also preserve the amplitude of CIG, which is the input data of AVO/AVA inversion. In this paper, we analyze the amplitude-preserved extent and adaptability on complicate structure imaging of the two imaging methods. The test results show that both RTM(Reverse Time Migration) and Kirchhoff migration are of high amplitude preservation on plain structure, and RTM are better amplitude-preserved and imaging accuracy than Kirchhoff migration on complicate structure.

     

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