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首页> 外文期刊>Journal of Contaminant Hydrology >Two-phase flow and transport in a single fracture--porous medium system
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Two-phase flow and transport in a single fracture--porous medium system

机译:单一裂缝-多孔介质系统中的两相流和运移

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摘要

The prognosis for the remediation of contaminated fractured media is much worse than that for more homogeneous units. Fractures act as conduits for the flow of dense non--aqueous phase liquids (DNAPLs), while diffusion is responsible for the storage of dissolved mass in the surrounding matrix. A numerical model incorporating aqueous phase transport in a variable-aper- ture fracture and its surrounding matrix is developed and coupled with an existing two-phase flow model. The processes of transient two--phase flow, non-equilibrium dissolution, advective--disper- sive transport in the fracture, and three-dimensional matrix diffusion are included in the model. Results from various investigations show that the DNAPL distribution is very sensitive to variations in aperture within a single fracture. Diffusion-controlled mass removal from both the matrix and from the hydraulically inaccessible zones within the fracture itself result in extremely large time frames for significant mass removal from these systems. Success in aqueous phase mass removal from the matrix is very sensitive to the effective fracture spacing. The hydraulic gradient in the fracture only affects the amount of water removed from the system, and does not greatly affect the amount of time required to remove the contaminant mass from the matrix. The ability to remove mass is somewhat sensitive to the porosity and effective matrix diffusion coefficient over the range of expected values.
机译:修复受污染的裂缝性介质的预后要比均质单元的预后要差得多。裂缝充当稠密非水相液体(DNAPL)流动的通道,而扩散则负责将溶解物质存储在周围的基质中。建立了在变孔径裂缝及其周围基质中包含水相输运的数值模型,并与现有的两相流模型耦合。该模型包括瞬态两相流,非平衡溶解,裂缝中的对流-弥散运移以及三维基质扩散的过程。各种研究的结果表明,DNAPL的分布对单个裂缝内孔径的变化非常敏感。从基质本身以及从裂缝本身的水力不可及区域中进行扩散控制的质量去除,导致从这些系统中大量去除质量的时间表非常长。从基质中去除水相质量的成功对有效裂缝间距非常敏感。裂缝中的水力梯度只会影响从系统中去除的水量,而不会极大地影响从基质中去除污染物的时间。在预期值范围内,去除质量的能力对孔隙率和有效基质扩散系数有些敏感。

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