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首页> 外文期刊>Air, Soil and Water Research >Study of Seasonal Rainfall Infiltration Via Time-Lapse Surface Electrical Resistivity Tomography: Case Study of Gamboa Area, Panama Canal Watershed
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Study of Seasonal Rainfall Infiltration Via Time-Lapse Surface Electrical Resistivity Tomography: Case Study of Gamboa Area, Panama Canal Watershed

机译:时移地表电阻率层析成像技术对季节性降雨入渗的研究:以巴拿马运河流域甘巴地区为例

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摘要

The present investigation was focused on the variations in rainwater infiltration experienced by soils of Gamboa zone (Panama Canal Watershed) during various seasons of the year, employing a time-lapse analysis of electrical resistivity tomography (ERT). In 2009, a total of 3 geoelectrical tests were undertaken during the dry, transition and rainy seasons across a profile 47 m in length, strategically distributed on site. The results obtained in this study showed strong variations in calculated resistivity between these seasons, taking the dry season as a reference with decreases and increases of percent difference of resistivity between ?20% and ?100%, and between 50% and 100%, respectively. These decreases, when displayed through a sequence of time-lapse images, reveal a superficial extension of the water content variations along the entire profile, as well as strong inversion artifacts showing false increases of calculated electrical resistivity. Decreases are the product of the rainfall increase obtained in this type of tropical environment; permanent conductive anomalies in 3 tests are associated with the streams close to the study site. The results of this work were compared with a simulation resulting from a series of bidimensional models applied to the 3 studies evaluated: dry, transition and rainy seasons.
机译:本研究着眼于电阻率层析成像(ERT)的时移分析,研究了冈巴地区(巴拿马运河集水区)的土壤在一年中各个季节经历的雨水入渗变化。 2009年,在干旱,过渡和雨季期间进行了3次地电测试,全长47 m,分布在现场。这项研究获得的结果表明,在这些季节之间计算的电阻率存在很大差异,以干旱季节为参考,电阻率的百分比差分别在?20%和?100%之间以及在50%和100%之间减小和增加。 。当通过一系列延时图像显示时,这些减少量表明了水分含量沿整个剖面的表面扩展,以及强烈的反演伪影,显示了计算出的电阻率的错误增加。减少是在这种热带环境中降雨增加的结果; 3个测试中的永久性导电异常与靠近研究地点的水流有关。这项工作的结果与模拟的二维模型进行了比较,该模型适用于评估的3个研究:干旱,过渡和雨季。

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