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Influence of Macro-pores on DNAPL Migration in Double-Porosity Soil Using Light Transmission Visualization Method

机译:透光可视化方法研究大孔隙对双孔隙土壤DNAPL迁移的影响

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Double porosity is a substantial microstructure characteristic in a wide range of geomaterials. It is a natural phenomenon that can be found in many types of soil, and it can result from biological, chemical or mechanical damage. In this paper, the influence of macro-pores on dense non-aqueous phase liquid (DNAPL) migration in double-porosity medium was investigated using light transmission visualization technique. Three experiments were carried out in two-dimensional flow chambers filled with a double-porosity medium composed of a mixture of local sand and sintered kaolin clay spheres arranged in a periodic manner. In each experiment, a different volumetric fraction of macro-pores and micropores was used. Tetrachloroethylene (PCE) was used to simulate DNAPL, and it was dyed using Oil-Red-O for better visualization. A predetermined amount of PCE was injected into the flow chambers and this amount was re-calculated using image analysis. A very strong correlation was found between the PCE amount injected and the amount calculated from image analysis in each experiment. The experiment was repeated by filling the flow chamber with silica sand to represent single-porosity medium. The results show that the macro-pores have a considerable effect on the PCE migration in double-porosity soil as the PCE movement was the fastest in the third experiment which contained the largest macro-pores volume. The accuracy of the method was validated using statistical analysis. The results show a slight difference between the means of the three experiments, indicating that the method is viable for monitoring NAPL migration in double-porosity medium under different volumetric fractions of macro-pores and micropores.
机译:双重孔隙率是广泛的土工材料中的重要微观结构特征。这是一种自然现象,可以在许多类型的土壤中发现,并且可能是由生物,化学或机械损伤引起的。本文利用光透射可视化技术研究了大孔对双孔介质中致密非水相液体(DNAPL)迁移的影响。在充满双孔介质的二维流动室内进行了三个实验,该介质由局部沙子和周期性排列的烧结高岭土球体的混合物组成。在每个实验中,使用了不同体积分数的大孔和微孔。四氯乙烯(PCE)用于模拟DNAPL,并使用Oil-Red-O对其进行染色以实现更好的可视化。将预定量的PCE注入流动室,并使用图像分析重新计算该量。在每个实验中,在注入的PCE量与通过图像分析计算出的量之间发现非常强的相关性。通过用硅砂填充流动室以表示单孔介质来重复该实验。结果表明,大孔对双孔隙土壤中的PCE迁移具有相当大的影响,因为在第三个实验中PCE运动最快,它包含最大的大孔体积。使用统计分析验证了该方法的准确性。结果表明这三个实验方法之间存在细微差异,表明该方法对于监测大孔和微孔不同体积分数下双孔介质中NAPL的迁移是可行的。

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