首页> 外文期刊>Open Journal of Applied Sciences >Electrical Resistivity Imaging of Suspected Seepage Channels in an Earthen Dam in Zaria, North-Western Nigeria
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Electrical Resistivity Imaging of Suspected Seepage Channels in an Earthen Dam in Zaria, North-Western Nigeria

机译:尼日利亚西北部Zaria土坝中可疑渗流通道的电阻率成像

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To determine and map the subsurface conditions of a dam, a 2D electrical resistivity tomography study was carried out within the two flanks of Zaria dam at Shika. This was done to ascertain if the variations in the volume of water content in the dam is due to an anomalous seepage beneath the subsurface or seasonal effects. On the basis of the interpretation of the acquired data, various zones of relatively uniform resistivity values were mapped and identified. The first zone is characterized by moderate resistivity values of 150 - 600 ohm-m. It represents unsaturated topsoil with thicknesses varying from 1 - 4.5 m. The second (intermediate depth) resistivity zone, with values ranging from 5 - 100 ohm-m and thickness varying from 3.5 - 10 m, represents a silt clay layer with high moisture content. The third resistivity zone represents fairly weathered granite and is characterized by relatively high resistivity values ranging from 700 - 6000 ohm-m. The available borehole log data correlated well with the pseudo-sections in relation to the obtained resistivity values and depth. Zones of relatively low resistivity within the bedrock are interpreted to represent potential seepage pathways. Hence, this geophysical method can be successfully used to delineate and map these seepage pathways within the subsurface of the earth dam.
机译:为了确定和绘制大坝的地下条件,在Shika的Zaria大坝的两个侧面进行了二维电阻层析成像研究。这样做是为了确定大坝中水含量的变化是否是由于地下地下的异常渗漏或季节性影响引起的。在解释所获取的数据的基础上,绘制并确定了电阻率值相对均匀的各个区域。第一个区域的特征是电阻率为150-600 ohm-m。它代表厚度为1-4.5 m的不饱和表土。第二个(中间深度)电阻率区域的值范围为5-100 ohm-m,厚度范围为3.5-10 m,表示具有高水分含量的粉砂粘土层。第三电阻率区域代表相当风化的花岗岩,其特征是相对较高的电阻率值范围为700-6000 ohm-m。在获得的电阻率值和深度方面,可用的井眼测井数据与伪断面很好地相关。基岩内电阻率相对较低的区域被解释为代表潜在的渗流途径。因此,这种地球物理方法可以成功地用于描述和标绘土坝地下的渗流路径。

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