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The transmissibility of faulted connections in corner-point geometry models

机译:角点几何模型中故障连接的传递性

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The transmissibility expression generally used for connections across faults in industrial flow-simulation models built using corner-point geometry is inaccurate, because of cell misalignments across the faults. A comprehensive suite of highresolution flow-simulation models has been designed to assess the magnitude of the error, which is greatest for connections with smaller juxtaposition areas; between cells with higher kV: kH ratios; between cells with greater length: height aspect ratios; in more heterogeneous sequences; for connections containing more permissive fault rocks; and for connections between cells with lower angular misalignments. Transmissibility can be underestimated by a factor of 10 or more in the absence of fault rock; however, the inclusion of realistic fault transmissibility multipliers virtually eliminates the error. The expression for transmissibility for corner-point geometry models contained in commercial simulators is therefore within acceptable limits for most realistic faulted full-field models.
机译:在使用拐点几何构建的工业流动模拟模型中,通常用于跨断层连接的传递性表达式不准确,因为断层之间的单元错位。设计了一套全面的高分辨率流动模拟模型来评估误差的大小,这对于具有较小并置区域的连接是最大的;具有较高kV的电池之间:kH比;长度较大的单元格之间:高度纵横比;在更异质的序列中;用于包含更宽松的断层岩石的连接;以及具有较低角度错位的单元之间的连接。在没有断层岩石的情况下,渗透率可以低估 10 倍或更多;然而,包含实际的故障传递性乘数实际上消除了误差。因此,对于大多数实际的断层全场模型,商业模拟器中包含的角点几何模型的透射率表达式在可接受的范围内。

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