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Fast high-resolution beam tomography and velocity-model building

机译:快速高分辨率束层析成像和速度模型建立

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We present a wide-azimuth beam tomography based on fast beam migration and a method for automatically estimating the rms velocity. This combination allows us to have a direct "input data to velocity model" workflow that does not involve laborious manual user interaction other than quality control (QC). The estimated rms velocity model serves as an initial model for tomography. A 3D residual-moveout (RMO) method enables a very rapid estimation of the depth or time delays along each ray, which represent the direct input to a tomographic update, without the time-consuming steps required for traditional tomography, including preparing the gathers for semblance analysis, semblance picking, and back-projection picks QC. A 2000 km2 velocity model can be updated using 400 CPUs in less than five minutes on a 20 m by 20 m by 20 m velocity-model grid. In addition, beam tomography retains the true azimuthal information. This allows the tomographic update to go beyond the current limitation of limited wide-azimuth velocity updates. Beam tomography allows for faster turnaround time for large 3D seismic projects and, at the same time, increases the accuracy of the velocity model by using wide-azimuth information that is typically unavailable in traditional tomography. In addition to a single-parameter update (one time delay or residual velocity value for each image point) and multiple-parameter update (time delay depends on offset), we now have a wide-azimuth and offset update (time delay depends on offset and azimuth).
机译:我们提出了一种基于快速束迁移的宽方位束层析成像技术和一种自动估计均方根速度的方法。这种组合使我们可以直接进行“将数据输入到速度模型”工作流,除了质量控制(QC)之外,不涉及费力的手动用户交互。估计的均方根速度模型用作断层扫描的初始模型。 3D残留偏移(RMO)方法可以非常快速地估计沿每条射线的深度或时间延迟,这代表了层析成像更新的直接输入,而无需传统层析成像所需的耗时步骤,包括为采集层析成像做好准备外观分析,外观选择和反投影质控。在20 m x 20 m x 20 m速度模型网格上,可以使用400个CPU在不到五分钟的时间内更新2000 km2速度模型。此外,射线断层扫描保留了真实的方位角信息。这使断层扫描更新超出了有限的广角速度更新的当前限制。束层析成像技术可以为大型3D地震项目提供更快的周转时间,同时,通过使用传统层析成像技术通常无法获得的宽方位角信息,可以提高速度模型的准确性。除了单参数更新(每个图像点有一个时间延迟或剩余速度值)和多参数更新(时间延迟取决于偏移量)外,我们现在还有宽方位角和偏移量更新(时间延迟取决于偏移量)和方位角)。

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