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The impact of migration on AVO

机译:迁移对AVO的影响

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Amplitude variation with offset (AVO) analysis is often limited to areas where multidimensional propagation effects such as reflector dip and diffractions from faults can be ignored. Migration-inversion provides a framework for extending the use of seismic amplitudes to areas where structural or stratigraphic effects are important. In this procedure, sources and receivers are downward continued into the earth using uncollapsed prestack migration. Instead of stacking the data as in normal migration, the prestack migrated data are used in AVO analysis or other inversion techniques to infer local earth properties. The prestack migration can take many forms. In particular, prestack time migration of common-angle sections provides a convenient tool for improving the lateral resolution and spatial positioning of AVO anomalies. In this approach, a plane-wave decomposition is first applied in the offset direction, separating the wavefield into different propagating angles. The data are then gathered into common-angle sections and migrated one angle at a time. The common-angle migrations have a simple form and are shown to adequately preserve amplitude as a function of angle. Normal AVO analysis is then applied to the prestack migrated data. Examples using seismic lines from the Gulf of Mexico show how migration improves AVO analysis. In the first set of examples, migration is shown to improve imaging of subtle spatial variations in bright spots. Subsequent AVO analysis reveals dim spots associated with dry-hole locations that were not resolvable using traditional processing techniques, including both conventional AVO and poststack migration. A second set of examples shows improvements in AVO response after migration is used to reduce interference from coherent noise and diffractions. A final example shows the impact of migration on the spatial location of dipping AVO anomalies. In all cases, migration improves both the signal-to-noise ratio and spatial resolution of AVO anomalies.
机译:带偏移的振幅变化(AVO)分析通常限于可以忽略多维传播效应(例如反射器倾角和断层衍射)的区域。迁移反演提供了一个框架,可将地震振幅的使用扩展到结构或地层效应很重要的区域。在此过程中,使用未塌陷的叠前偏移将源和接收器向下连续向下进入地球。不同于在正常迁移过程中堆叠数据,而是在AVO分析或其他反演技术中使用叠前迁移的数据来推断局部地球属性。叠前迁移可以采用多种形式。特别是,公共角度截面的叠前时间偏移为改善AVO异常的横向分辨率和空间定位提供了方便的工具。在这种方法中,首先在偏移方向上应用平面波分解,将波场分为不同的传播角度。然后,将数据收集到公共角度部分中,并一次迁移一个角度。共角偏移具有简单的形式,并显示出可以充分保留振幅随角度变化的关系。然后,将常规AVO分析应用于叠前已迁移的数据。使用来自墨西哥湾的地震测线的例子说明了迁移如何改善AVO分析。在第一组示例中,显示了迁移可改善亮点中细微空间变化的成像。随后的AVO分析显示与干孔位置相关的暗斑,这些斑点是使用传统处理技术(包括常规AVO和叠后偏移)无法解决的。第二组示例显示了将偏移用于减少相干噪声和衍射的干扰后AVO响应的改善。最后一个例子显示了迁移对浸没AVO异常的空间位置的影响。在所有情况下,迁移都会改善AVO异常的信噪比和空间分辨率。

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