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首页> 外文期刊>Catena: An Interdisciplinary Journal of Soil Science Hydrology-Geomorphology Focusing on Geoecology and Landscape Evolution >Spatial and temporal monitoring of soil moisture using surface electrical resistivity tomography in Mediterranean soils
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Spatial and temporal monitoring of soil moisture using surface electrical resistivity tomography in Mediterranean soils

机译:地中海土壤水分土壤水分的空间和时间监测

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摘要

s ERT techniques are especially promising in (semi-arid) areas with shallow and rocky soils where other methods fail to produce soil moisture maps and to obtain soil profile information. Electrical Resistivity Tomography (ERT) was performed in the Peyne catchment in southern France at four sites located on four different geological substrates. The main objective was to test the usefulness of such geoelectrical method for the assessment of spatial and temporal variability of soil water content and to demarcate subsurface horizontal zones: topsoil, active zone and bedrock. We used time lapse ERT to separate lithological variability from soil moisture content and to evaluate its potential to demarcate subsurface soil horizons. Three measurement campaigns were carried out and field data were collected using the Sting R1/IP advanced resistivity meter with one-channel receiver. We used an array of 28 electrodes with 1m spacing, which provided reliable resistivity information to a depth of approximately 5.5m. ERT were followed by soil sampling carried out with a hand auger, directly below the respective geoelectrical profiles. Empirical linear regression was used to determine the specific relationships between volumetric soil moisture of the field samples and electrical resistivity data obtained in situ. Our conclusions are that ERT is a useful technique for providing information on the spatial–temporal variability of water content in semi-arid areas and for reaching depths otherwise inaccessible. In this study we proposed a method to delineate three important different soil zones: topsoil, active zone, bedrock, based on resistivity data. These three layers are essential information in understanding and modelling the interaction between subsurface and vegetation water uptake, particularly in semi-arid regions. Highlights ? ERT provides info on spatial–temporal variability of water content in semi-arid areas. ? Using ERT we delineate three different soil zones: topsoil, active zone, and bedrock. ? Understanding and modelling interaction between subsurface water and vegetation ? Lithology controls water availability and storage capacity in Mediterranean.
机译:S ERET技术在(半干旱)区域尤其承诺,其中浅层和岩石土壤,其他方法未能产生土壤湿度图并获得土壤剖面信息。电阻率断层扫描(ERT)在法国南部的Peyne集水区进行,位于四个不同地质基质的四个站点。主要目的是测试这种电气测量方法的有用性,以评估土壤含水量的空间和时间变异性和划分地下水平区:表土,有源区和基岩。我们使用时间流逝ERT与土壤水分含量的岩性可变性分开,评价其划分地下土壤视野的潜力。进行三个测量活动,并使用符号R1 / IP先进电阻率计收集现场数据,具有单通道接收器。我们使用具有1M间距的28个电极阵列,其可靠的电阻率信息为约5.5米的深度。然后用手工螺旋钻进行的土壤采样,直接在相应的地电型材下方进行。经验线性回归用于确定现场样品的体积土壤水分和原位获得的电阻率数据之间的特定关系。我们的结论是ERT是提供有关半干旱地区水含量的空间变异性的信息的有用技术,以及达到其他无法进入的深度。在这项研究中,我们提出了一种描绘三个重要的不同土壤区的方法:基于电阻率数据,绘制三个重要的不同土壤区:表土,有源区,基岩,基岩。这三层是理解和建模地下和植被水摄取之间的相互作用的基本信息,特别是在半干旱地区。强调 ? ERT提供了半干旱地区含水量的空间时间变异性的信息。还使用ERT我们描绘了三种不同的土壤区:表土,有源区和基岩。还地下水与植被之间的理解和建模互动吗?岩性控制地中海的水可用性和储存能力。

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