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首页> 外文期刊>Hydrogeology Journal >Integrated studies for characterization of lineaments used to locate groundwater potential zones in a hard rock region of Karnataka, India
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Integrated studies for characterization of lineaments used to locate groundwater potential zones in a hard rock region of Karnataka, India

机译:用于确定印度卡纳塔克邦硬岩地区地下水潜在地带的岩层特征的综合研究

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摘要

An integrated study was carried out to investigate the subsurface geological conditions in a hard rock environment, with the aim of identifying zones with groundwater resource potential. The study, in Bairasagara watershed, Karnataka, India, considered geomorphology, water level, resistivity imaging, self potential, total magnetic field and susceptibility. The signatures due to lineaments have been clearly identified and their role in groundwater movement has been documented. Synthetic simulation methods were used to model the electrical response of the lineament using finite differential modeling scheme. The inverted image of the field data is compared with the synthetic image and iteration were performed on the initial model until a best match was obtained resulting on the generation of the calibrated resistivity image of the subsurface. Resistivity imaging revealed that the dykes are weathered/fractured to a depth of 6–8 m and are compact at deeper levels, and that they behave as barriers to groundwater movement, yet facilitate a good groundwater potential zone on the upgradient side. The results of magnetic surveys were utilized in differentiating granites and dolerite dykes with an insignificant resistivity contrast. Geomorphological expression alone cannot reveal the groundwater potential associated with a lineament. However, characterizing the nature of the feature at depth with integrated geophysical methods provides essential information for assessing that potential.
机译:为了确定具有地下水资源潜力的区域,对硬岩环境中的地下地质条件进行了综合研究。这项在印度卡纳塔克邦拜拉萨拉加(Bairasagara)流域的研究考虑了地貌,水位,电阻率成像,自电势,总磁场和磁化率。已经清楚地识别了由于纹痕引起的签名,并且已经记录了它们在地下水运动中的作用。综合仿真方法被用于使用有限差分建模方案对线的电响应进行建模。将场数据的倒置图像与合成图像进行比较,并对初始模型进行迭代,直到获得最佳匹配,从而生成了地下的校正电阻率图像。电阻率成像显示,堤坝风化/破裂至6-8 m的深度,并在更深的水平上是致密的,它们起到了阻碍地下水运动的作用,但有助于在上升侧形成良好的地下水潜力区。磁测的结果被用于区分花岗岩和白云岩堤坝,其电阻率差异不明显。单凭地貌表达并不能揭示与地层相关的地下水潜力。但是,使用集成的地球物理方法在深度上表征特征的性质可为评估该潜力提供必要的信息。

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