首页> 外文会议>National Conference on Environmental Science and Technology; 20020908-10; Greensboro,NC(US) >Evaluating Vadose Transport Processes Using Centrifugation Methods
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Evaluating Vadose Transport Processes Using Centrifugation Methods

机译:使用离心法评估渗流过程

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Most subsurface contamination events involve migration through the vadose zone (i.e., unsaturated) before reaching an aquifer; however, research efforts generally focus on processes occurring below the water table, in part, due to the difficulty in mimicking vadose processes in the laboratory. Traditionally, researchers have used vacuum systems to apply tension at the bottom of a soil column as a means of establishing steady flow under unsaturated conditions. Such experimental methods, however, are time consuming, limited to a very narrow range of practical moisture contents, and susceptible to mechanical failure due to long experiment times. The Unsaturated Flow Apparatus (UFA) consists of a centrifuge with a modified rotor and pump system that can apply a controlled stream of tracer solution to the surface of two soil columns while they are spinning. In addition, the UFA can be used to determine the unsaturated hydraulic conductivity and matric potential for porous media much faster than conventional lab techniques, such as pressure plates. The advantages and limitations of such a centrifuge system for evaluating vadose transport processes will be discussed through several relevant environmental examples.
机译:大多数地下污染事件涉及在到达含水层之前通过渗流带(即非饱和带)的迁移。但是,研究工作通常集中在地下水位以下的过程,部分原因是难以模拟实验室中的渗流过程。传统上,研究人员使用真空系统在土壤柱的底部施加张力,作为在非饱和条件下建立稳定流动的一种方法。然而,这样的实验方法很耗时,限于非常窄的实际水分含量范围,并且由于长时间的实验而容易发生机械故障。不饱和流量仪(UFA)由带有改进的转子和泵系统的离心机组成,可在两根土壤柱旋转时向它们施加受控的示踪剂流。此外,与传统的实验室技术(例如压板)相比,UFA可以更快地确定多孔介质的不饱和水力传导率和基质势。将通过几个相关的环境示例来讨论这种用于评估渗流过程的离心机系统的优缺点。

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