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The missing complexity in seismically imaged normal faults: What are the implications for geometry and production response?

机译:地震成像正常断层缺失的复杂性:对几何和生产响应的影响是什么?

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摘要

The impact of geometric uncertainty on across-fault flow behaviour at the scale of individual intra-reservoir faults is investigated in this study. A high resolution digital elevation model (DEM) of a faulted outcrop is used to construct an outcrop-scale geocellular grid capturing high-resolution fault geometries (5 m scale). Seismic forward modelling of this grid allows generation of a 3D synthetic seismic cube, which reveals the corresponding seismically resolvable fault geometries (12.5 m scale). Construction of a second geocellular model, based upon the seismically resolvable fault geometries, allows comparison with the original outcrop geometries. Running fluid flow simulations across both models enables us to assess quantitatively the impact of outcrop resolution versus seismic resolution fault geometries upon across-fault flow. The results suggest that seismically resolvable fault geometries significantly underestimate the area of across-fault juxtaposition relative to realistic fault geometries. In turn this leads to overestimates in the sealing ability of faults, and inaccurate calculation of fault plane properties such as transmissibility multipliers (TMs).
机译:在这项研究中,研究了几何不确定性对单个储层内部断层规模的跨断层流动行为的影响。断层露头的高分辨率数字高程模型(DEM)用于构建露头规模的地细胞网格,捕获高分辨率断层几何形状(5 m尺度)。该网格的地震正演模型可以生成3D合成地震立方体,从而揭示相应的地震可分辨断层几何形状(12.5 m尺度)。根据地震可解决的断层几何构造第二个地质蜂窝模型,可以与原始露头几何进行比较。跨两个模型运行流体流动仿真使我们能够定量评估露头分辨率与地震分辨率断层几何形状对跨断层流的影响。结果表明,相对于实际断层几何,地震可解决的断层几何显着低估了跨断层并列的面积。反过来,这会导致过高的断层封闭能力,以及对断层平面特性(如透射率乘数(TMs))的不正确计算。

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