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Effect of Natural Advection on Stabilization of Contaminant Plume in Natural Traps at Underground Disposal of Liquid Wastes

机译:自然对流对液体废物地下处置中自然陷阱中污染物羽流稳定性的影响

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摘要

The migration of a contaminant from a zone of injection disposal of hazardous liquid waste in a deep-seated aquifer is considered. Because of its higher density, the polluted groundwater will accumulate under the effect of gravity in aquifer dips (depressions). A 2D-model of variable-density groundwater flow is used to determine the conditions under which the gravity force will prevent polluted groundwater from leaving depressions driven by regional current. As the result, such depressions can serve as natural traps for polluted waters. The required conditions are based on simple analytical relationships, derived from the analysis of a theoretical model of variable-density groundwater flow in an inclined confined aquifer. The obtained technique is used to estimate the efficiency of such a trap at the site of injection disposal of liquid radioactive waste from Mining and Chemical Combine in Krasnoyarsk region. The analytical estimates of the trap with the use of the proposed technique are shown to be in good agreement with the results of numerical simulation of contaminant migration.
机译:考虑了污染物从深部含水层中的注射危险液体废物处置区迁移出来。由于密度较高,被污染的地下水将在重力作用下在含水层倾角(凹陷)中积聚。可变密度地下水流的二维模型用于确定重力可防止受污染的地下水离开由区域水流驱动的洼地的条件。结果,这种凹陷可以作为污水的自然陷阱。所需条件基于简单的解析关系,该解析关系是从对倾斜密闭含水层中的可变密度地下水流的理论模型进行分析得出的。所获得的技术用于估计在克拉斯诺亚尔斯克地区的采矿和化学联合工厂注入液体放射性废物的处置场所的这种捕集器的效率。使用所提出的技术对捕集阱的分析估计显示与污染物迁移的数值模拟结果非常吻合。

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