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首页> 外文期刊>Journal of Hazardous Materials >Force analysis and visualization of NAPL removal during surfactant-related floods in a porous medium
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Force analysis and visualization of NAPL removal during surfactant-related floods in a porous medium

机译:多孔介质中与表面活性剂相关的洪水期间NAPL去除的力分析和可视化

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摘要

Governing mechanisms of dense non-aqueous phase liquid (DNAPL) removal during surfactant and surfactant-foam (SF) flooding were studied by porous-patterned glass model experiments. Physical forces, viscous forces and capillary forces, acting on trichloroethylene (TCE) blobs were quantified to understand DNAPL removal mechanisms during the floods, simultaneously visualizing the removal mechanisms. The viscous force of the remedial fluid was intimately related to TCE removal from the porous medium. The remedial fluid with a high viscous force displaced more TCE blobs. Displacement of residual TCE by the remedial fluid began as viscous pressure of flooding was closed to the capillary pressure of the porous medium. In the region of viscous pressure less than the capillary pressure, residual TCE was either retained or solubilized, not displaced, implying that TCE solubilization was the dominant TCE removal process. Glass porous model visualization validated a dominance of the capillary forces during a surfactant flush and a dominance of the viscous forces of the displacing fluid during a SF flood.
机译:通过多孔图案玻璃模型实验研究了表面活性剂和表面活性剂泡沫(SF)驱替过程中致密非水相液体(DNAPL)去除的控制机理。量化作用于三氯乙烯(TCE)团块的物理力,粘性力和毛细作用力,以了解洪水期间DNAPL的去除机理,同时可视化去除机理。修复液的粘性力与从多孔介质中去除三氯乙烯的时间密切相关。具有高粘性力的治疗液置换了更多的TCE斑点。随着溢流的粘性压力接近多孔介质的毛细管压力,开始由补救流体驱替残余三氯乙烯。在粘性压力小于毛细管压力的区域中,残留的三氯乙烯被保留或被溶解而不被置换,这意味着三氯乙烯的溶解是去除三氯乙烯的主要过程。玻璃多孔模型可视化验证了表面活性剂冲洗期间毛细作用力的优势以及SF溢流过程中驱替液粘滞力的优势。

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