渗流带对地下水污染的影响研究进展

Banajarani Panda, S. Chidambaram
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引用次数: 5

摘要

气包带是位于地下水位和地表之间的地质剖面。相对于饱和区,它的含水率较低,通常称为非饱和区。地下水位的补给通过渗透带,了解通过该区域的输送对地下水污染研究至关重要。地下水污染是由一些物理和化学过程控制的,当污染物通过渗透带时,这些过程可能会阻碍或转化污染物。多孔材料作为土壤结构、环境流体压力和其他因素的组成部分,在张力下保持水分。当渗透带含水率低于饱和时,漏液及其传递的溶解物质被保留。在水文学上,非饱和带的深度对控制水的运动和污染物从地表向含水层的运移起着重要的作用。本文综述了渗流带中流体流动和保湿的原理及其对地下水污染的影响。研究分为两部分:第一部分包括土壤水分带的描述、控制孔隙空间中流体分布的性质的基本原理以及如何利用地下土壤性质来评估渗滤液的流动性。第二部分综述了渗流带流体运动原理及渗流对地下水污染的影响。本研究将重点研究渗透带条件和土壤性质如何控制地下水污染。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of the vadose zone on groundwater pollution - A review
The vadose zone is the geologic profile that lies between the water table and the ground surface. It has low water content relative to the saturated zone and commonly referred as the unsaturated zone. Recharge to the water table passes through the vadose zone and understanding transport through this region is critical in groundwater pollution studies. Groundwater pollution is controlled by a number of physical and chemical processes which may retard or transform contaminants as they pass through the vadose zone.  Porous materials hold water under tension as a component of soil structure, ambient fluid pressures and other factors. When vadose zone water content is below saturation, leakage liquid as well as the dissolved materials passed on in it are retained. Hydrologically, the depth of unsaturated zone plays an important role in controlling water movement and contaminant transport from the land surface to the aquifer. The purpose of this study is to present an overview of the principles of fluid flow and moisture retention in the vadose zone and its influence on groundwater pollution. The study is presented in two parts: Part I includes descriptions of zones of soil moisture, basic principles of properties controlling the fluid distribution in pore spaces and how subsurface soil properties can be used to assess the leachate mobility. Part II review the principle of fluid movement in the vadose zone and impact of seepage on groundwater pollution. This study will focus on how vadose zone conditions and soil properties act to control groundwater pollution.
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