基于全波场迁移的目标导向采集几何设计

GEOPHYSICS Pub Date : 2024-01-18 DOI:10.1190/geo2023-0578.1
B. Revelo‐Obando, G. Blacquière
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引用次数: 0

摘要

勘测设计的最终目标是找到采集参数,以获取适合最佳成像的高质量数据。同时,还要满足预算、健康、安全和环境方面的限制。我们提出了一种基于全波场迁移的目标导向采集设计算法。该算法优化了接收机密度函数,该函数显示了获得最佳成像质量所需的单位面积接收机数量。该方法利用现有的地震数据创建参考模型,并将其纳入拟议的目标函数。为了使设计以目标为导向,目标函数乘以一个掩码,使目标区域的权重更大。二维和三维实施结果表明,优化的接收器密度函数在需要更多数据以提高图像质量的区域具有更高的值。相应的接收器几何结构在这些区域放置了更多的接收器。我们通过使用统一和优化的几何图形计算目标区域的图像来验证结果。后者显示目标区域的图像质量有所改善。此外,我们还根据优化的接收器密度函数计算了成像后达到一定信噪比所需的接收器数量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Target-oriented acquisition geometry design based on Full-Wavefield Migration
The ultimate goal of survey design is to find the acquisition parameters that enable acquiring high-quality data suitable for optimal imaging. This, while fulfilling budget, health, safety and environmental constraints. We propose a target-oriented acquisition design algorithm based on Full-Wavefield Migration. The algorithm optimizes a receiver density function that indicates the number of receivers per unit area required for obtaining the best possible image quality. The method makes use of available seismic data to create a reference model which is included in the proposed objective function. To make the design target-oriented, the objective function is multiplied with a mask that gives more weight to the target areas of interest. The results of the 2D and 3D implementations show an optimized receiver density function with higher values at the zones where more data is needed for improving image quality. The corresponding receiver geometries have more receivers placed at these areas. We validate the results by computing the images of the target zone using uniform and optimized geometries. The use of the latter shows an improvement in the image quality at the target zone. Additionally, we compute the number of receivers required for achieving a certain signal-to-noise ratio after imaging based on the optimized receiver density function.
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