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Effects of Porous Medium Heterogeneity on Vadose Zone Desiccation: Intermediate-Scale Laboratory Experiments and Simulations

机译:多孔介质非均质性对渗流区干燥的影响:中规模实验室实验和模拟

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摘要

Soil desiccation (drying), involving water evaporation induced by dry gas injection, is a potentially robust vadose zone remediation process to limit contaminant transport through the vadose zone. A series of four intermediate-scale flow cell experiments was conducted in homogeneous and simple layered heterogeneous porous medium systems to investigate the effects of heterogeneity on desiccation of unsaturated porous media. The permeability ratios of porous medium layers ranged from about 5 to almost2 orders of magnitude. The insulated flow cell was equipped with 20 humidity and temperature sensors while a dual-energy y system was used to determine water saturations at various times. The multiphase code STOMP was used to simulate the desiccati on process. For the layered systems, results show that injected dry gas flowed predominantly in the higher permeability layer and delayed water removal from the lower permeability material. For the configurations tested, water vapor diffusion from the lower to the higher permeability zone was considerable over the duration of the experiments, resulting in much larger relative humidity values of the outgoing air than based on permeability ratios alone. Acceptable numerical matches with the experimental data were obtained when an extension of the saturation-capillary pressure relation below the residual water saturation was used. The agreements between numerical and experimental results suggest that the correct physics is implemented in the simulator.
机译:土壤干燥(干燥)涉及由干气注入引起的水蒸发,是一种潜在的稳健的渗流带修复方法,可限制污染物通过渗流带的运输。在均质和简单分层的非均质多孔介质系统中进行了一系列四个中等规模的流通池实验,以研究非均质性对不饱和多孔介质干燥的影响。多孔介质层的渗透率范围为约5到几乎2个数量级。绝缘流通池配有20个湿度和温度传感器,同时使用双能系统确定不同时间的水饱和度。多阶段代码STOMP用于模拟干燥过程。对于分层系统,结果表明注入的干燥气体主要在较高渗透率的层中流动,并且延迟了从较低渗透率的材料中除水。对于所测试的配置,在整个实验过程中,水蒸气从较低的渗透率区域扩散到较高的渗透率区域是相当大的,导致流出空气的相对湿度值比仅基于渗透率的情况大得多。当使用饱和-毛细管压力关系的扩展到残余水饱和度以下时,可以获得与实验数据的可接受的数值匹配。数值结果与实验结果之间的一致性表明,模拟器中实现了正确的物理学。

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