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首页> 外文期刊>Journal of Hydrology >Monitoring soil water content and deficit using Electrical Resistivity Tomography (ERT) – A case study in the Cevennes area, France
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Monitoring soil water content and deficit using Electrical Resistivity Tomography (ERT) – A case study in the Cevennes area, France

机译:使用电阻层析成像(ERT)监测土壤含水量和不足量–以法国塞文山脉地区为例

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摘要

At the hillslope scale, surface runoff depends to a great extent on the water deficit of the soils, i.e. the difference between the effective porosity and the water content, all through the soil profile. The aim of this study was to assess water deficits using Electrical Resistivity Tomography (ERT). ERT offers several advantages: (i) it is not intrusive, (ii) it exhibits spatial patterns at a decametric or hectometric scale, and (iii) it provides information on both water content and soil depth. The study was conducted on a Mediterranean shaley sandy soil, in the Cevennes (South of France). First, the factors (nature of the pores and organization of the material, water content, soil solution and temperature) on which electrical resistivities depend were analyzed in the laboratory. Soil samples were used to derive the ‘m’ and ‘n’ parameters of Archie’s relation, changes in the soil solution over time, and the effect of temperature on resistivities. These results were then used to interpret ERT in situ at different times of the year. The water content and water deficit obtained from ERT were then compared with local measurements made using Time Domain Reflectometry (TDR) and the comparison was satisfactory. The results of this study show the potential of measuring soil water content and water deficit using electrical resistivities, and describe how uncertainties in temperature, porosity, and fluid conductivity impact ERT-obtained estimates of soil water content and deficit.
机译:在山坡规模上,地表径流在很大程度上取决于土壤的水分亏缺,即整个土壤剖面中的有效孔隙率和含水量之差。这项研究的目的是使用电阻层析成像(ERT)评估缺水情况。 ERT具有几个优点:(i)它不具侵入性;(ii)它以十亿分之一或百亿分度的尺度显示空间模式;(iii)它提供有关水分含量和土壤深度的信息。这项研究是在塞文山脉(法国南部)的地中海沙利沙质土壤上进行的。首先,在实验室中分析了电阻率所依赖的因素(孔隙的性质和材料的组织,含水量,土壤溶液和温度)。土壤样本用于得出阿奇关系的“ m”和“ n”参数,土壤溶液随时间的变化以及温度对电阻率的影响。然后将这些结果用于一年中不同时间的ERT现场解释。然后将由ERT获得的水含量和水分亏缺与使用时域反射仪(TDR)进行的局部测量进行比较,结果令人满意。这项研究的结果显示了使用电阻率测量土壤含水量和水分亏缺的潜力,并描述了温度,孔隙度和流体电导率的不确定性如何影响ERT获得的土壤含水量和亏缺的估计值。

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