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Numerical analysis for transport and distribution of light non-aqueous phase liquids in homogeneous vadose zone

机译:轻质非水相液体在均相渗流区内输运与分布的数值分析

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The numerical simulation for transport and distribution of Light non-aqueous phase liquids in homogeneous vadose zone was carried out. The results shows that the migration discipline of light non-aqueous phase liquids are different with water-soluble contaminants. The down rates and distribution law of light non-aqueous phase liquids related with media permeability and water holding capacity,also both shows the upper part of the capillary with a residual area and gathered zone rules in homogeneous media. The coarse granular media while making the oil phase down fast, but threat to groundwater smaller. Despite the downward speed of light non-aqueous phase liquids in fine-grained media is slower, it remain in the soil more than in coarse granular media,once the oil phase come into the capillary zone with a gathering area, it can easily give risky to groundwater overcoming the capillary force backwater. The paper provide theoretical basis on diesel pollution control and reparation effectively
机译:进行了均匀瓦多斯区呈均匀水相液体输送和分布的数值模拟。结果表明,光非水相液体的迁移学科与水溶性污染物不同。与介质渗透率和水持能力相关的轻的非水相液的衰退率和分布定律,也显示出毛细管的上部,具有均匀介质的残余区域和聚集的区域规则。粗粒介质,同时使油相快速降低,但威胁到地下水较小。尽管细粒介质中的光非水相液体向下速度较慢,但​​它仍然比在粗粒培养基中留在土壤中,一旦油相进入毛细管区,可以轻松冒险地下水克服了毛细管力回水。本文有效地为柴油污染控制和赔偿提供了理论依据

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