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Multiphase flow and transport through fractured heterogeneous porous media

机译:通过裂隙非均质多孔介质的多相流和输运

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The migration of Dense, Non-Aqueous Phase Liquid (DNAPL) and dissolved phase contamination through a fractured heterogeneous porous medium has been investigated through the use of a multiphase compositional model. The sensitivity of the timescales of migration and the distribution of contaminant in the subsurface to the mean permeability, the variance of the permeability, and the degree of fracturing of the domain were examined. It was found that increasing the mean permeability of the domain allowed the DNAPL to penetrate deeper into the subsurface, while decreasing the mean permeability caused the DNAPL to pool at shallower depths. The presence of fractures within the system was found to control the infiltration only in the most fractured domain. Moment analysis of the nonwetting phase showed that large-scale movement had ceased after approximately 9 years (maximum duration of the source-on condition was approximately 4.5 years). This tended to be due to a redistribution of the DNAPL towards a residual configuration, as was evidenced by the gradual trending of average nonwetting phase saturations within the domain to a static value. The dissolved phase plume was found to migrate at essentially the same rate as the nonwetting phase, due to the reduced relative permeability of lenses containing DNAPL, and due to diffusive losses of mass to the matrix of fractured clay and silty-clay lenses. Some exceptions to this were found when the DNAPL could not overcome the displacement pressure of a lens, and could not by-pass the lens due to the lack of available driving force after the source had been shut off.
机译:通过使用多相组成模型研究了稠密的非水相液体(DNAPL)的迁移和溶解相污染物通过破裂的非均质多孔介质的迁移。考察了迁移时间尺度和地下污染物的分布对平均渗透率,渗透率方差和区域破裂程度的敏感性。发现增加结构域的平均渗透率可使DNAPL渗透至更深的地下,而降低平均渗透率会使DNAPL聚集在较浅的深度。发现系统内裂缝的存在仅在最破裂的区域控制渗透。对非润湿阶段的矩分析表明,大约9年后,大规模运动已经停止(源接通状态的最大持续时间约为4.5年)。这往往是由于DNAPL向残余构型的重新分布所致,正如域中平均非润湿相饱和度逐渐趋于静态值所证明的那样。发现溶解相羽流以与非润湿相基本相同的速率迁移,这是由于含有DNAPL的镜片的相对渗透性降低,以及由于质量扩散到破裂的粘土和粉质粘土镜片的基质中。当DNAPL无法克服镜头的位移压力,并且由于在关闭光源后缺少可用的驱动力而无法绕过镜头时,发现了一些例外情况。

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