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关于稳态羽流大小的数值实验与现场结果。

Numerical experiments and field results on the size of steady state plumes.

作者信息

Maier U, Grathwohl P

机构信息

University of Tübingen, Center for Applied Geoscience, Sigwartstr. 10, 72076 Tübingen, Germany.

出版信息

J Contam Hydrol. 2006 May 5;85(1-2):33-52. doi: 10.1016/j.jconhyd.2005.12.012. Epub 2006 Feb 28.

Abstract

Contaminated groundwater poses a serious risk for drinking water supplies. Under certain conditions, however, groundwater contamination remains restricted to a tolerable extent because of natural attenuation processes. We present an innovative approach to evaluate the size of these so-called steady-state plumes by 2-D and 1-D modelling in homogeneous aquifers. If longitudinal mixing is negligible, scenarios can be modelled in a simplified way using a 1-D domain vertical to the direction of flow. We analysed the sensitivity of the plume length with respect to biodegradation kinetics, flow velocity, transverse vertical dispersivity alphat, the source and aquifer geometry and reaction stoichiometry. Our findings indicate that for many readily biodegradable compounds transverse-dispersive mixing rather than reaction kinetics is the limiting factor for natural attenuation. Therefore, if alphat, aquifer and source geometry and concentrations of electron acceptors and donors are known, the length of the steady state contaminant plume can be predicted. The approach is validated under field conditions for an ammonium plume at a former landfill site in SW Germany.

摘要

受污染的地下水对饮用水供应构成严重风险。然而,在某些条件下,由于自然衰减过程,地下水污染仍被限制在可容忍的范围内。我们提出了一种创新方法,通过在均质含水层中进行二维和一维建模来评估这些所谓稳态羽流的大小。如果纵向混合可以忽略不计,则可以使用垂直于水流方向的一维区域以简化方式对情景进行建模。我们分析了羽流长度对生物降解动力学、流速、横向垂直弥散度αt、源和含水层几何形状以及反应化学计量的敏感性。我们的研究结果表明,对于许多易生物降解的化合物,横向弥散混合而非反应动力学是自然衰减的限制因素。因此,如果已知αt、含水层和源的几何形状以及电子受体和供体的浓度,就可以预测稳态污染物羽流的长度。该方法在德国西南部一个 former landfill site 的铵羽流的现场条件下得到了验证。 (注:“former landfill site”直译为“ former 垃圾填埋场”,结合语境推测可能是“以前的垃圾填埋场”,此处翻译可能不准确,需结合更详细背景信息确定准确译法 )

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