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Outcrop topography as a proxy of acoustic impedance in synthetic seismograms

机译:露头形貌作为合成地震图中声阻抗的代名词

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Two-dimensional seismic models of geologic data are usually based on simplified impedance functions: large "seismic-scale" lithologic blocks exhibit uniform impedance values, and abrupt changes in impedance occur at the boundaries of these lithologic blocks. For outcrop-based seismic models, erosional slope topography may be one possible proxy for impedance that is relatively easy to measure in outcrop. In this paper, we use terrestrial photogrammetric techniques to establish the relationship between outcrop topography, expressed as the rock slope angle, and impedance for a marl-limestone terrain in the Vercors, southeast France. The photogrammetric surveys were combined with sedimentologic descriptions and petrophysical measurements (including P-wave velocity, bulk-density, clay content, and porosity). The slope angle along a particular vertical profile was then converted into a pseudoimpedance log, which was subsequently used to construct 1-D synthetic seismograms. A comparison of these new seismograms with published seismic models of the same area revealed the benefits of the new approach, in particular for seismic modeling using high-frequency source wavelets.
机译:地质数据的二维地震模型通常基于简化的阻抗函数:大型“地震规模”岩性岩块表现出均匀的阻抗值,并且在这些岩性岩块的边界处发生阻抗的突变。对于基于露头的地震模型,侵蚀坡度地形可能是相对容易在露头中测量的阻抗的一种可能代表。在本文中,我们使用地面摄影测量技术建立了法国东南部韦科尔(Vercors)的露石地形(以岩石坡度表示)与阻抗之间的关系。摄影测量与沉积学描述和岩石物理测量(包括P波速度,堆积密度,粘土含量和孔隙度)相结合。然后将沿特定垂直剖面的倾斜角转换为伪阻抗对数,随后将其用于构建一维合成地震图。将这些新的地震图与已发布的同一地区的地震模型进行比较后,发现了该新方法的优势,特别是对于使用高频源小波的地震模型。

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