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Variable-density groundwater flow and solute transport in porous media containing nonuniform discrete fractures

机译:包含非均匀离散裂缝的多孔介质中的变密度地下水流动和溶质运移

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摘要

Variations in fluid density can greatly affect fluid flow and solute transport in the subsurface. Heterogeneities such as fractures play a major role for the migration of variable-density fluids. Earlier modeling studies of density effects in fractured media were restricted to orthogonal fracture networks, consisting of only vertical and horizontal fractures. The present study addresses the phenomenon of 3D variable-density flow and transport in fractured porous media, where fractures of an arbitrary incline can occur. A general formulation of the body force vector is derived, which accounts for variable-density flow and transport in fractures of any orientation. Simulation results are presented that show the verification of the new model formulation, for the porous matrix and for inclined fractures. Simulations of variable-density flow and solute transport are then conducted for a single fracture, embedded in a porous matrix. The simulations show that density-driven flow in the fracture causes convective flow within the porous matrix and that the high-permeability fracture acts as a barrier for convection. Other simulations were run to investigate the influence of fracture incline on plume migration. Finally, tabular data of the tracer breakthrough curve in the inclined fracture is given to facilitate the verification of other codes.
机译:流体密度的变化会极大地影响地下的流体流动和溶质运移。裂缝等非均质性对可变密度流体的迁移起着重要作用。早期对裂缝介质中密度效应的建模研究仅限于正交裂缝网络,仅由垂直裂缝和水平裂缝组成。本研究解决了破裂多孔介质中3D可变密度流动和传输的现象,在该现象中可能会发生任意倾斜的裂缝。推导了体力矢量的一般公式,该公式解释了在任何方向的裂缝中密度变化的流量和输运情况。给出的仿真结果表明了对多孔基质和倾斜裂缝的新模型公式的验证。然后对埋在多孔基质中的单个裂缝进行了变密度流动和溶质运移的模拟。模拟表明,裂缝中由密度驱动的流动导致多孔基质内的对流,而高渗透性裂缝则成为对流的屏障。进行其他模拟以研究裂缝倾斜对羽流的影响。最后,给出了倾斜裂缝中示踪剂穿透曲线的表格数据,以方便其他代码的验证。

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