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Influence of fracture truncation on dispersion: a dual permeability model

机译:断裂截断对扩散的影响:双重渗透模型

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Simulations with a dual permeability model show that a few discrete fractures can have a major influence on plume geometry. A limited number of truncated fracture(1-4)within a permeable matrix can create nearly circular plumes, with about the same degree of spreading in the direction transverse to the average hydraulic gradient as in the longitudinal direction. By comparison, continuous fractures in the direction of flow tend to produce elongated plumes, similar to those typically seen in granular materials. Both types of plumes have been observed in tracer experiments in fractured porous media on the OAK Ridge Reservation. Understanding the influence of fracture geometry is important in planning field characterization and subsequent remediation in fractured porous media.
机译:用双重渗透率模型进行的模拟表明,一些离散的裂缝可能对羽流的几何形状有重大影响。在可渗透基质内有限数量的截断裂缝(1-4)可以产生近乎圆形的羽状流,其在与平均水力梯度成横向的方向上与在纵向上的扩散程度大致相同。相比之下,在流动方向上的连续裂缝往往会产生细长的羽状流,类似于粒状材料中常见的情况。在OAK Ridge保留区的多孔多孔介质的示踪实验中,已观察到两种羽状流。理解裂缝几何形状的影响对于计划油田特征描述和裂缝多孔介质的后续修复非常重要。

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