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Incorporating Crossing Conjugate Faults in Reservoir Models

机译:在储层模型中包含交叉共轭故障

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Crossing conjugate faults are difficult to incorporate into an earth model due to complex fault interactions and the limitations of fault modeling methods to handle these fault relationships. Y or lambda faults often require special handling, not only in the fault modeling stage but also when creating the horizon model and the reservoir grid. Correctly modeling half-Y or half-lambda faults - created by overlapping convergent or divergent conjugate faults - is even more problematic. These faults have truncation characteristics of Y or lambda faults along part of their length, but are not truncated in other sections. Previous methods of fault modeling, based on pillars or on binary trees, do not provide the flexibility necessary for modeling the complex truncations present in these situations. Our method not only provides a simple solution to modeling Y and lambda faults, but also to the more complex problem of the half-Y or half-lambda, including fault modeling, horizon modeling, and reservoir gridding. The inclusion of these faults in the framework not only results in a more accurate representation of the structure, but also improves the subsequent workflow. Volume calculations, well planning, reservoir gridding, and property modeling all benefit from the improved structural framework.
机译:由于复杂的故障相互作用以及故障建模方法处理这些故障关系的故障建模方法的限制,难以结合到地球模型中难以结合到地球模型中。 Y或Lambda故障通常需要特殊处理,不仅在故障建模阶段而且在创建地平线模型和储存器网格中。正确建模半y或半λ故障 - 通过重叠的收敛或发散的缀合物故障创建 - 更有问题。这些故障沿其长度的一部分具有Y或Lambda故障的截断特征,但在其他部分中没有截断。以前的故障建模方法,基于支柱或二进制树,不提供建模这些情况下存在的复杂截短所需的灵活性。我们的方法不仅为建模y和lambda故障提供了一个简单的解决方案,还提供了半y或半λ的更复杂的问题,包括故障建模,地平线建模和水库网格。在框架中包含这些故障不仅导致结构更准确的结构,而且改善后续工作流程。批量计算,规划,储层网格和物业建模所有受益于改进的结构框架。

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