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非承压含水层中受地下水流影响的二维重质非水相液体运移

Two-dimensional DNAPL migration affected by groundwater flow in unconfined aquifer.

作者信息

Kamon Masashi, Endo Kazuto, Kawabata Junichi, Inui Toru, Katsumi Takeshi

机构信息

Graduate School of Global Environmental Studies, Kyoto University, Sakyo-ku, Kyoto 606-8501, Japan.

出版信息

J Hazard Mater. 2004 Jul 5;110(1-3):1-12. doi: 10.1016/j.jhazmat.2004.02.033.

Abstract

The dense non-aqueous phase liquid (DNAPL) migration process was experimentally investigated in a laboratory-scale tank (150 cm width, 82.5 cm height, and 15 cm depth) to assess a site characterization on DNAPL contamination below a groundwater table. The heterogeneous ground of the tank model consisted of Toyoura sand (hydraulic conductivity, k = 1.5 x 10(-2) cm/s for void ratio, e = 0.62) and silica #7 sand (k = 2.3 x 10(-3) cm/s for e = 0.72). A series of experiments was carried out with or without lateral groundwater flow. Hydrofluoroether was used as a representative DNAPL. The main results obtained in this study are as follows: (1) the DNAPL plume does not invade into the less permeable soil layer with higher displacement pressure head; (2) the DNAPL plume migrates faster with lateral groundwater flow than without it; (3) lateral groundwater flow does not affect lateral DNAPL migration; rather, it promotes downward migration; and (4) pore DNAPL pressure without groundwater flow is higher than that with it. The above experimental results were compared with numerical analysis. The fundamental behaviors of DNAPL source migration observed experimentally are expected to be useful for assessing the characteristics of two-dimensional DNAPL migration in an aquifer.

摘要

在实验室规模的水箱(宽150厘米、高82.5厘米、深15厘米)中对致密非水相液体(DNAPL)的迁移过程进行了实验研究,以评估地下水位以下DNAPL污染场地的特征。水箱模型的非均质地面由丰浦砂(孔隙率e = 0.62时,水力传导率k = 1.5×10⁻²厘米/秒)和硅砂#7(e = 0.72时,k = 2.3×10⁻³厘米/秒)组成。进行了一系列有或没有侧向地下水流的实验。氢氟醚被用作代表性的DNAPL。本研究获得的主要结果如下:(1)DNAPL羽流不会侵入具有较高驱替压头的低渗透土层;(2)有侧向地下水流时DNAPL羽流的迁移速度比没有侧向地下水流时更快;(3)侧向地下水流不影响DNAPL的侧向迁移;相反,它促进向下迁移;(4)无地下水流时的孔隙DNAPL压力高于有地下水流时的孔隙DNAPL压力。将上述实验结果与数值分析进行了比较。实验观察到的DNAPL源迁移的基本行为有望用于评估含水层中二维DNAPL迁移的特征。

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