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Dense Nonaqueous Phase Liquid (DNAPL...
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Wang, Xinyu.
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Dense Nonaqueous Phase Liquid (DNAPL) Source Zone Characterization in Highly Heterogeneous Permeability Fields.
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
正題名/作者:
Dense Nonaqueous Phase Liquid (DNAPL) Source Zone Characterization in Highly Heterogeneous Permeability Fields./
作者:
Wang, Xinyu.
面頁冊數:
106 p.
附註:
Source: Masters Abstracts International, Volume: 51-05.
Contained By:
Masters Abstracts International51-05(E).
標題:
Engineering, Environmental. -
電子資源:
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=1535436
ISBN:
9781303006869
Dense Nonaqueous Phase Liquid (DNAPL) Source Zone Characterization in Highly Heterogeneous Permeability Fields.
Wang, Xinyu.
Dense Nonaqueous Phase Liquid (DNAPL) Source Zone Characterization in Highly Heterogeneous Permeability Fields.
- 106 p.
Source: Masters Abstracts International, Volume: 51-05.
Thesis (M.S.)--Tufts University, 2013.
The characterization of DNAPL source zones provides important information for evaluating cost-effective remediation schemes at contaminated sites. In this work, numerical simulations were conducted to investigate the influence of: the capillary pressure-saturation parameters; residual organic saturation; spill rate; hypothetical field structure; and dimensionality on the DNAPL migration and entrapment simulation in a highly heterogeneous aquifer.
ISBN: 9781303006869Subjects--Topical Terms:
783782
Engineering, Environmental.
Dense Nonaqueous Phase Liquid (DNAPL) Source Zone Characterization in Highly Heterogeneous Permeability Fields.
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Source: Masters Abstracts International, Volume: 51-05.
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Advisers: Linda M. Abriola; Itza Mendoza-Sanchez.
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The characterization of DNAPL source zones provides important information for evaluating cost-effective remediation schemes at contaminated sites. In this work, numerical simulations were conducted to investigate the influence of: the capillary pressure-saturation parameters; residual organic saturation; spill rate; hypothetical field structure; and dimensionality on the DNAPL migration and entrapment simulation in a highly heterogeneous aquifer.
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The results indicate that, in highly heterogeneous aquifers, the determination of capillary pressure-saturation parameters has a critical influence on the modeling of the DNAPL migration, while the residual organic saturation has almost no influence on DNAPL distributions. The spill rate strongly affects the DNAPL spread. The location of low permeability layers has critical consequences on the prediction of the vertical migration. The maximum organic saturation and pool fraction for highly heterogeneous aquifers are higher than those for mildly heterogeneous aquifers. The feasibility of using 2-D simulation results to predict 3-D simulation trends needs additional work.
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