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A capillary number for physical displacement of TCE-DNAPL trapped in a rough-walled fracture

机译:困在粗糙壁裂缝中的TCE-DNAPL物理位移的毛细管数

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摘要

A heterogeneous nature of rough-walled rock fractures complicates a recovery of DNAPL trapped in fractured rock aquifers, which forms a persistent plume within the fractured rocks and present a long-term source of contamination. Experimental studies were conducted to suggest a criterion for the physical displacement of DNAPL from rough-walled fractures in the context of capillary number (Nca), a dimensionless number representing the ratio of the viscous to capillary forces. A series of experiments using water, surfactant solution and dense fluid were conducted in the range of capillary number from 2.29 × 10−4 to 3.41 × 10−2. The experimental results suggested that a higher capillary number than 1 × 10−2 be required for a near complete DNAPL removal (more than 95% of initial saturation) from rough-walled fractures. For capillary number on the order of 10−3, DNAPL can be mobilized or recovered to some degree. For the capillary number below 1 × 10−3, any kind of remedial fluids would have no effect on physical displacement. It is suggested that remedial fluid utilizing physical displacement be formulated to comply with Nca 1 × 10−2 to maximize a complete physical removal and the fluid utilizing chemical solubilization or reaction do with Nca 1×10−3 to minimize unwanted migration.
机译:粗糙壁裂缝的非均质性质使陷于裂隙含水层中的DNAPL的回收复杂化,这在裂隙岩石中形成了持久的羽状流,并提供了长期的污染源。进行了实验研究,提出了在毛细管数(Nca)的背景下DNAPL从粗糙壁裂缝中物理位移的标准,该无量纲数代表粘性力与毛细管力之比。在毛细管数为2.29×10−4 到3.41×10−2 的范围内,使用水,表面活性剂溶液和浓稠流体进行了一系列实验。实验结果表明,要从粗糙的裂缝中几乎完全去除DNAPL(大于初始饱和度的95%),需要使用比1×10-2 高的毛细管数。对于大约10−3 的毛细管数,DNAPL可以动员或恢复到一定程度。对于低于1×10-3 的毛细管数,任何种类的补漏液都不会影响物理位移。建议将利用物理位移的补给液配制成符合Nca 的要求,以最大程度地实现完全的物理去除,而利用化学增溶或反应的流体应与Nca 结合使用。 <1×10−3 可最大程度地减少不必要的迁移。

著录项

  • 来源
    《Geosciences Journal》 |2011年第3期|p.305-311|共7页
  • 作者单位

    HLW Disposal Research Division, Korea Atomic Energy Research Institute, Daejeon, 305-353, Republic of Korea;

    Department of Earth and Environmental Sciences, Chonnam National University, Gwangju, 500-757, Republic of Korea;

    HLW Disposal Research Division, Korea Atomic Energy Research Institute, Daejeon, 305-353, Republic of Korea;

    School of Earth and Environmental Sciences, Seoul National University, Seoul, 151-747, Republic of Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    rough-walled fracture; DNAPL; capillary number; physical displacement; criterion;

    机译:粗壁骨折;DNAPL;毛细血管数目;物理位移;判据;

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