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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Reverse time migration of transmitted wavefields for salt boundary imaging
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Reverse time migration of transmitted wavefields for salt boundary imaging

机译:盐边界成像传输波场的反向时间迁移

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The imaging of steep salt boundaries has received much attention with the advent of improved wider azimuth acquisition designs and advanced imaging techniques such as reverse time migration (RTM), for example. However, despite these advancements in capability. there are cases in which the salt boundary is either poorly illuminated or completely absent in the migrated image. To provide a solution to this problem, we have developed two RTM methods for imaging salt boundaries, which use transmitted wavefields. In the first technique, downgoing waves, typically recorded in walkaway vertical seismic profile surveys, are used to image the salt flank via the generation of aplanatic iso-chrones. This image can be generated in the absence of an explicit interpretation of the salt flank using dual migration velocity models. as demonstrated on a 3D walkaway field data set from the Gulf of Mexico. In the second technique, we extend the basic theory to include imaging of upgoing source wavefields, which are transmitted at the base salt from below, as acquired by a surface acquisition geometry. This technique has similarities to the prism-imaging method, yet it uses transmitted instead of reflected waves at the salt boundary. Downgoing and upgoing methods are shown to satisfactorily generate an image of the salt flank; however, transmission imaging can create artifacts if reflection arrivals are included in the migration or the acquisition geometry is limited in extent. Increased wavelet stretch is also observed due to the higher transmission coefficient. An important benefit of these methods is that transmission imaging produces an opposite depth shift to errors in the velocity model compared with imaging of reflections. When combined with conventional seismic reflection surveys, this behavior can be used to provide a constraint on the accuracy of the salt and/or subsalt velocities.
机译:例如,陡峭的盐界的成像已经引起了改进的更广泛的方位获取设计和高级成像技术,例如相反时间迁移(RTM)。但是,尽管能力方面的进步。存在含盐边界在迁移图像中释放或完全不存在的情况。为了提供解决此问题的解决方案,我们开发了用于成像盐界的两个RTM方法,其使用传输的波场。在第一技术中,通常在散游垂直地震剖面调查中记录的追踪波用于通过产生的飞行ISO-轴来对盐侧面进行图像。可以在不存在使用双重迁移速度模型的情况下在没有明确解释盐侧面的情况下产生该图像。正如从墨西哥湾的3D走廊现场数据上所示。在第二种技术中,我们扩展了基本理论,包括由下面从下面的基盐发送的上源波场的成像,如面表面采集几何形状所获取。该技术具有与棱镜成像方法的相似之处,但它使用发送而不是在盐边界处的反射波。追随和上调的方法被证明令人满意地产生盐侧面的图像;然而,如果在迁移中包括反射到达,则传输成像可以创建伪像,或者在范围内限制采集几何体。由于透射系数较高,还观察到增加的小波拉伸。与反射成像相比,这些方法的一个重要益处是传输成像与速度模型中的误差产生相反的深度移位。当与常规地震反射调查结合时,这种行为可用于提供对盐和/或尺寸速度的精度的约束。

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