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首页> 外文期刊>Journal of Contaminant Hydrology >Experiments on vertical transverse mixing in a large-scale heterogeneous model aquifer
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Experiments on vertical transverse mixing in a large-scale heterogeneous model aquifer

机译:大型非均质模型含水层垂直横向混合实验

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Vertical transverse mixing is known to be a controlling factor in natural attenuation of extended biodegradable plumes originating from continuously emitting sources. We perform conservative and reactive tracer tests in a quasi two-dimensional 14 m long sandbox in order to quantify vertical mixing in heterogeneous media. The filling mimics natural sediments including a distribution of different hydro-fades, made of different sand mixtures, and micro-structures within the sand lenses. We quantify the concentration distribution of the conservative tracer by the analysis of digital images taken at steady state during the tracer-dye experiment. Heterogeneity causes plume meandering, leading to distorted concentration profiles. Without knowledge about the velocity distribution, it is not possible to determine meaningful vertical dispersion coefficients from the concentration profiles. Using the stream-line pattern resulting from an inverse model of previous experiments in the sandbox, we can correct for the plume meandering. The resulting vertical dispersion coefficient is approximately ≈ 4 x 10~(-9) m~2/s. We observe no distinct increase in the vertical dispersion coefficient with increasing travel distance, indicating that heterogeneity has hardly any impact on vertical transverse mixing. In the reactive tracer test, we continuously inject an alkaline solution over a certain height into the domain that is occupied otherwise by an acidic solution. The outline of the alkaline plume is visualized by adding a pH indicator into both solutions. From the height and length of the reactive plume, we estimate a transverse dispersion coefficient of ≈ 3 x 10~(-9) m~2/s. Overall, the vertical transverse dispersion coefficients are less than an order of magnitude larger than pore diffusion coefficients and hardly increase due to heterogeneity. Thus, we conclude for the assessment of natural attenuation that reactive plumes might become very large if they are controlled by vertical dispersive mixing.
机译:已知垂直横向混合是源自连续发射源的扩展的可生物降解烟羽自然衰减的控制因素。为了量化异质介质中的垂直混合,我们在准二维14 m长的沙箱中执行保守和反应性示踪剂测试。填充物模拟了自然沉积物,包括由不同的沙子混合物组成的不同水力衰落的分布,以及沙晶内部的微观结构。我们通过分析示踪剂染料实验过程中在稳态下拍摄的数字图像来量化保守示踪剂的浓度分布。非均质性导致羽状弯曲,导致浓度分布失真。在不了解速度分布的情况下,不可能从浓度曲线中确定有意义的垂直分散系数。使用沙盒中先前实验的逆模型所产生的流线模式,我们可以校正羽流曲折。最终的垂直色散系数约为≈4 x 10〜(-9)m〜2 / s。我们观察到垂直色散系数没有随行进距离的增加而明显增加,这表明异质性几乎对垂直横向混合没有任何影响。在反应性示踪剂测试中,我们将一定高度的碱性溶液连续注入到被酸性溶液占据的区域中。通过向两种溶液中添加pH指示剂,可以观察到碱性羽流的轮廓。根据反应羽的高度和长度,我们估计横向弥散系数约为3 x 10〜(-9)m〜2 / s。总体而言,垂直横向色散系数小于孔扩散系数一个数量级,并且由于异质性几乎不会增加。因此,对于自然衰减的评估,我们得出结论,如果通过垂直分散混合控制反应羽,它们可能会变得非常大。

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