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A triple continuum one-dimensional transport model for colloid facilitated contaminant migration in sets of parallel fractures with fracture skin

机译:胶体的三重连续一维传输模型促进了污染物在具有破裂皮肤的平行裂缝中的迁移

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摘要

A triple continuum one-dimensional transport model is developed to analyse colloid facilitated contaminant transport in fractured geological formations. The model accounts for contaminant transport in the fracture, reversible deposition onto fracture surfaces and onto the colloids, diffusion into the rock formation and irreversible deposition of colloids onto the fracture surfaces. Sorption of the contaminant onto the fracture surfaces and onto suspended and deposited colloids are assumed to follow the linear equilibrium assumption (LEA); whereas the irreversible deposition of colloids onto the fracture skin surface is assumed to be governed by the linear kinetic sorption isotherms. The resulting coupled contaminant transport equations are solved using a numerical model employing fully implicit finite difference method based formulation. Results clearly demonstrate that the presence of the fracture skin significantly influences colloid facilitated contaminant migration in fractured formations. Fracture skin porosity and fracture skin diffusion coefficient are demonstrated to be the critical fracture skin properties that affect colloid facilitated contaminant migration in fractures. The impact of different colloid parameters on contaminant transport is investigated. The distribution coefficient for contaminant sorption onto the suspended colloids is found to be the most significant colloid related parameter influencing contaminant migration in fractured formation with fracture skin.
机译:建立了三重连续一维输运模型,以分析胶体在破碎地质构造中促进污染物的输运。该模型解释了污染物在裂缝中的运移,在裂缝表面和胶体上的可逆沉积,在岩石中的扩散以及在裂缝表面上胶体的不可逆沉积。假设污染物吸附在裂缝表面以及悬浮和沉积的胶体上遵循线性平衡假设(LEA);假定胶体不可逆地沉积在骨折皮肤表面上是由线性动力学吸附等温线决定的。使用基于完全隐式有限差分法的公式化的数值模型可以解决由此产生的耦合的污染物迁移方程。结果清楚地表明,裂缝皮肤的存在显着影响了胶体促进了裂缝地层中污染物的迁移。裂缝皮肤的孔隙率和裂缝皮肤的扩散系数被证明是影响胶体促进污染物在裂缝中迁移的关键裂缝皮肤特性。研究了不同胶体参数对污染物迁移的影响。污染物吸附到悬浮胶体上的分布系数被发现是影响胶体在具有裂缝皮肤的裂缝地层中迁移的最重要的胶体相关参数。

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