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首页> 外文期刊>Journal of Hydrology >Modeling colloid transport in fractures with spatially variable aperture and surface attachment
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Modeling colloid transport in fractures with spatially variable aperture and surface attachment

机译:用空间可变孔径和表面附件建模骨折输送骨折

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摘要

A particle-tracking algorithm was developed to simulate colloid transport subject to wall effects on diffusion as well as colloid surface attachment as described by DLVO kinetics. The effects of spatially variable fracture surface potential, which contributed to spatially variable attachment strength affecting colloid transport, were investigated. The fracture surface potential was assumed to be either positively, neutrally (zero), or negatively correlated with the lognormally distributed local fracture aperture, described with a mean, variance, and isotropic correlation length. The results from several model simulations indicated that wall effects were negligible for the synthetic fractures studied here. When fracture surface potential was negatively correlated with local aperture, colloids were preferentially transported through the fracture, because they tended to enter high-flow, large-aperture regions where they underwent less attachment (have the largest first moment measured upon exit of the first colloid from the fracture). The variance (second moment) increased for flowing colloids when comparing negatively to zero and then positively correlated surface potentials to fracture apertures, because spreading notably increased when suspended colloids were temporarily attached onto fracture surfaces. For colloids attached onto fracture surfaces, both first and second moments decreased from negatively, to neutrally (zero), to positively correlated surface potentials to apertures. This is an intuitive result, consistent with fewer colloids attaching along the larger aperture preferential flow paths.
机译:开发了一种粒子跟踪算法,以模拟胶体传输,该胶体传输对扩散的壁效应以及如DLVO动力学所述的扩散以及胶体表面附着。研究了对影响胶体转运的空间可变连接强度有所增加的空间可变断裂表面电位的影响。假设断裂表面电位是正面,中性(零),或与逻辑正常分布的局部骨折孔呈负相关,所述局部骨折孔与平均,方差和各向同性相关长度描述。若干模型模拟的结果表明,在这里研究的合成骨折壁效应可以忽略不计。当断裂表面电位与局部孔径呈负相关时,胶体优先通过骨折运输,因为它们倾向于进入高流量,大型孔径区域,在那里它们越来越少附着(在第一个胶体出口时测量最大的第一矩。从骨折上)。当与零中的呈零和呈骨折呈阳性相关的表面电位对零点相比,流动胶体的方差(第二时刻)增加,因为当悬浮的胶体暂时附着在骨折表面上时显着增加。对于附着在骨折表面上的胶体,第一和第二矩从负面影响到中性(零),以将表面电位带正相关。这是一个直观的结果,与沿较大的孔径优先流动路径沿较小的胶体相一致。

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