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首页> 外文期刊>Hydrogeology journal >Assessing the influence of infiltration on the migration of light non-aqueous phase liquid in double-porosity soil media using a light transmission visualization method
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Assessing the influence of infiltration on the migration of light non-aqueous phase liquid in double-porosity soil media using a light transmission visualization method

机译:利用光传输可视化方法评估渗透对双孔隙土壤介质中光非水相液体迁移的影响

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The influence of infiltration on the migration of a light non-aqueous phase liquid (LNAPL) in double-porosity soil using the light transmission visualization (LTV) technique is investigated. Two LNAPL volumes (low and high volumes) were exposed to two rainfall intensities (light and heavy infiltration). For comparison purposes, the experiments were also repeated by compacting the flow chamber with silica sand only to represent the single-porosity medium and to investigate the influence of double-porosity on LNAPL migration. High-resolution LTV images of the flow chamber during LNAPL injection and subsequent water infiltration events were collected. Results show that the LNAPL migration depth during injection and its migration velocity were both correlated to the LNAPL volume. Subsequent water infiltration events caused the LNAPL that was entrapped in the porous media to be pushed further downward in all the experiments. The LNAPL migration velocity was 1.1 and 1.6cm/h for the low and high LNAPL spillage volumes for double-porosity experiments, respectively, a reduction rate of 64.7 and 70% compared to the LNAPL migration velocity during LNAPL injection, respectively. However, for single-porosity experiments, the LNAPL migration velocity was 0.7 and 1.2cm/h for the low and high LNAPL volumes, respectively. Furthermore, it was observed that the capillary fringe level was depressed in the saturated zone due to the influence of both infiltration and LNAPL volume. This study demonstrates that the LTV technique is an accurate and cost-effective laboratory tool for the visualization of the time-dependent influence of infiltration on LNAPL migration in porous media.
机译:研究了利用光传输可视化(LTV)技术研究了渗透对双孔隙污染物中的光非水相液(LNAPL)迁移的影响。将两种LNAPL体积(低和高体积)暴露于两个降雨强度(轻盈和重渗透)。为了比较目的,还通过将流动室压实与硅砂压实来重复实验,以代表单孔隙介质并研究双孔隙率对LNAPL迁移的影响。收集了LNAPL注射期间流动室的高分辨率LTV图像和随后的水渗透事件。结果表明,注射期间的LNAPL迁移深度和其迁移速度均与LNAPL体积相关。随后的水浸润事件导致捕获在多孔介质中的LNAPL在所有实验中进一步向下推动。与LNAPL注射期间的LNAPL迁移速度相比,LNAPL迁移速度分别为14.7和70%的低LNAPPL溢出体积分别为1.1和1.6cm / h。然而,对于单孔隙率实验,LNAPL迁移速度分别为低和高LNAPL体积为0.7和1.2cm / h。此外,观察到由于渗透和LNAPL体积的影响,毛细血管条纹水平在饱和区中抑制。该研究表明,LTV技术是一种准确且经济高效的实验室工具,用于可视化渗透对多孔介质中LNAPL迁移的时间依赖性影响。

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