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首页> 外文期刊>Journal of Asian earth sciences >High-resolution electrical resistivity tomography and seismic refraction for groundwater exploration in fracture hard rocks: A case study in Kanthan, Perak, Malaysia
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High-resolution electrical resistivity tomography and seismic refraction for groundwater exploration in fracture hard rocks: A case study in Kanthan, Perak, Malaysia

机译:骨折硬岩地下水勘探高分辨率电阻率断层扫描和地震折射 - 以马来西亚Kanthan,Perak案例研究

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摘要

This research article describes the integration of high-resolution electrical resistivity tomography (ERT) and seismic refraction to explore potential groundwater in fracture carbonate hard rocks. Data Levels Synthesization (DLS) method is developed where the data levels of two different optimized arrays were merged to produce one final subsurface resistivity image to achieve high-resolution ERT. Numerical modeling was initially conducted on three different geoelectrical arrays. The results of before and after applied DLS method were compared to evaluate the effectiveness of each geoelectrical array to delineate fracture and anomalies accurately. Lineament map is constructed beforehand to map the major discontinuities which could possibly be the potential target for water-containing and water-conducting zones in the subsurface. Two geophysical survey lines were conducted where each survey line covered both ERT and seismic refraction methods. Two tube wells were successfully drilled exactly on the fracture zone with a flow rate around 1000 L/h. The potential water-containing zones within the subsurface limestone bedrock were identified as zones of low to moderate geoelectrical resistivity values ranging from 10 to 400 Omega m and V-p velocities exceeding 2000 ms(-1). The fault zones were determined by sharp vertical boundary between the high and low resistivities zones in ERT image and lateral decrease in the V-p velocities of the limestone bedrock and depressions along the overburden-bedrock interface. The DLS method of Wenner-Schlumberger and dipole-dipole arrays had been proven effective in enhancing the horizontal and vertical resolutions to produce high-resolution ERT image validated with seismic refraction, lineament map, and tube well drillings.
机译:本研究文章介绍了高分辨率电阻率断层摄影(ERT)和地震折射的集成,探讨了骨折碳酸盐硬岩中的潜在地下水。数据级合成(DLS)方法是开发的,其中两个不同优化阵列的数据级合并以产生一个最终的地下电阻率图像以实现高分辨率ERT。最初在三种不同电气阵列上进行数值建模。比较施用DLS方法之前和之后的结果,以评估每个地电阵列的有效性,精确地描绘骨折和异常。谱系地图是预先建造的,以映射主要的不连续性,这可能是地下含水和导电区的潜在目标。进行了两个地球物理调查线,其中每个测量线涵盖了偏离偏置和地震折射方法。两根管孔精确地钻井在骨折区上,流速约为1000升/小时。地下石灰石基岩内的含水区被鉴定为低至中等电气电阻率值的区域,范围为10至400孔M和V-P速度超过2000ms(-1)。故障区由ERT图像中的高电阻区和低电阻区域之间的尖锐垂直边界确定,并且沿着过载的覆盖层界面的V-P速度的V-P速度的横向减小。 Wenner-Schlumberger和偶极偶极阵列的DLS方法有效地增强了水平和垂直分辨率,以产生用地震折射,谱系地图和管井验证的高分辨率偏振图像。

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