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An iterative approach to updating velocities beneath postsalt anomalies and its impact on presalt imaging

机译:一种迭代方法来更新盐后异常下的速度及其对盐前成像的影响

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摘要

Complex geology and deepwater presalt targets offshore Brazil lend themselves to seismic imaging challenges. The postsalt sections of the Santos and Campos Basins also featured thin-bed, high-impedance layers of volcanic material and other shallow velocity anomalies. These features were often near the top of salt (TOS) and produced areas of poor presalt focusing. Because accurately modeling the postsalt was imperative for imaging the presalt, we developed a new workflow for velocity model updating. Where previous top-down methods have failed, our method embraced the challenges of imaging beneath the volcanics by incorporating additional presalt information into the updates. 'Our method is interpretation-dependent but provides a robust and reliable workflow for updating the postsalt velocity model in the presence of complex geology. Using a narrow azimuth data set acquired with variable-depth streamers, we evaluated the effectiveness of our iterative workflow. The result was improved presalt imaging.
机译:巴西海上复杂的地质和深水预盐目标使自己面临地震成像挑战。桑托斯和坎波斯盆地的盐后地区还具有薄层,高阻抗的火山岩层和其他浅层速度异常。这些特征通常位于盐(TOS)顶部附近,并且产生的盐盐聚焦能力差。因为精确建模后盐对于成像预盐是必不可少的,所以我们开发了一种新的工作流程来更新速度模型。在以前的自上而下方法失败的情况下,我们的方法通过将其他盐下信息合并到更新中来应对火山岩成像的挑战。 ``我们的方法依赖于解释,但在复杂地质条件下提供了可靠且可靠的工作流程来更新后盐速度模型。使用可变深度拖缆采集的狭窄方位角数据集,我们评估了迭代工作流程的有效性。结果是改进了盐前成像。

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