期刊文献+

黏滞性对LNAPL在非饱和多孔介质中优先流影响的试验研究 被引量:10

Experimental study of impacts of viscosity of LNAPL on preferential flow in unsaturated porous media
在线阅读 下载PDF
导出
摘要 为探究轻非水相液体(LNAPL)在非饱和带通过裂隙快速通道产生的优先流对地下含水层造成污染的影响,选取大豆油和0号柴油2种不同黏滞性的LNAPL,通过室内试验,研究不同黏滞性的LNAPL在通过非饱和多孔介质中单裂隙快速通道产生的优先流迁移规律。试验结果表明:黏滞性小的LNAPL通过裂隙产生的优先流的运移速度快;LNAPL进入地下水毛细带后受毛细水的顶托力作用,垂向迁移速率减缓,横向扩散速度增大,LNAPL优先流锋面形态逐渐变缓;优先流不仅能通过裂隙非均质条件产生,而且可以在基质中以指流的形式存在,黏滞性大的LNAPL更容易产生多个狭长形的指流。 In order to study the influence of the preferential flow formed in the facture by light non-aqueous phase liquids( LNAPLs) in the unsaturated zone on contamination of the aquifer,we experimentally investigated the migration behavior of the preferential flow formed in a single fracture by LNAPLs with different viscosities in the unsaturated porous media,selecting soybean oil and No. 0 diesel fuel as two LNAPLs with different viscosities. The results indicate that the LNAPL with lower viscosity forms a faster preferential flow in the fracture,and,after entering the capillary zone,the LNAPL migrates more slowly in the vertical direction,and disperses faster in the horizontal direction under the action of uplift force. The preferential flow not only occurs in fractured heterogeneous media,but also exists in homogeneous media in the form of finger flow,and the LNAPL with larger viscosity tends to form more narrow finger flows.
出处 《河海大学学报(自然科学版)》 CAS CSCD 北大核心 2015年第1期66-71,共6页 Journal of Hohai University(Natural Sciences)
基金 国家自然科学基金(41172204) 江苏省自然科学基金(BK2012814) 江苏省自然科学基金青年基金(BK20130830)
关键词 优先流 轻油黏滞性 LNAPL 裂隙 大豆油 0号柴油 preferential flow viscosity of light oil LNAPL fracture soybean oil No.0 diesel fuel
  • 相关文献

参考文献15

  • 1叶为民,金麒,黄雨,唐益群.地下水污染试验研究进展[J].水利学报,2005,36(2):251-255. 被引量:30
  • 2FETTER C W.污染水文地质学[M].周念清,黄勇,译.北京:高等教育出版社,2011.
  • 3YANG Zhibing, HANNA Z, AULI N, et al. The role of geological heterogeneity and variability in water infiltration on non-aqueous phase liquid migration[ J]. Environmental Earth Science ,2013,68 (7) :2085-2097.
  • 4JAEHAK J, RANDALL J C. An analytical model for predicting LNAPL distribution and recovery from muhi-layered soils [ J ].Journal of Contaminant Hydrology ,2013,156:52-61.
  • 5SENTENAC P, MONTINARO A, KULESSA B. Diesel transport monitoring in simulated unconfined aquifers using miniature resistivity arrays [ J ]. Environmental Earth Science ,2010, 61 ( 1 ) : 107-114.
  • 6SLEEP B E, SYKES J F. Compositional simulation of groundwater contamination by organic compounds : 1. model development and verification[ J]. Water Resources Research, 1993, 29 (6) : 1697-1708.
  • 7KECHAVARZI C, SOGA K, LLLANGASEKARE T H. Two-dimensional laboratory simulation of LNAPL infiltration and redistribution in the vadose zone [ J]. Journal of Contaminant Hydrology ,2005,76 (3/4) :211-233.
  • 8SIMANTIRAKI F, AIVALIOTI M, GIDARAKOS E. Lmplementation of an image analysis technique to determine LNAPL infiltration and distribution in unsaturated porous media [ J ]. Desalination,2009,248 ( 1/2/3 ) :705-715.
  • 9武晓峰,唐杰,藤间幸久.地下水中轻质有机污染物(LNAPL)透镜体研究[J].环境污染与防治,2000,22(3):17-20. 被引量:26
  • 10邢巍巍,胡黎明.轻非水相流体污染物运移的离心模型[J].清华大学学报(自然科学版),2006,46(3):341-345. 被引量:7

二级参考文献67

共引文献114

同被引文献185

引证文献10

二级引证文献61

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部