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Determining the Basaltic Sequence Using Seismic Reflection and Resistivity Methods

机译:用地震反射和电阻率法确定玄武岩层序

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This study was carried out in Harat Rahat (south of Almadinah Almonwarah) using seismic reflection and resistivity methods. The main objectives of this study are to determine the extent of the basaltic layer and to define the subsurface faults and fractures that could affect and control the groundwater movement in the study area. A 2D seismic profile was acquired and the result shows that the subsurface in the study area has a major fault. We obtained a well match when the seismic result was compared with drilled wells. As a complementary tool, the resistivity method was applied in order to detect the groundwater level. The results of the resistivity method showed that six distinct layers have been identified. The interpretation of these six layers show that the first three layers, the fourth layer, the fifth layer and the bottom of the section indicated various subsurface structures and lithologies; various basaltic layers, fractured basalt, weathered basement and fresh basaltic layers, respectively. It is obvious that the eventual success of geophysical surveys depend on the combination with other subsurface data sources in order to produce accurate maps.
机译:这项研究是在Harat Rahat(Almadinah Almonwarah的南部)使用地震反射和电阻率方法进行的。这项研究的主要目的是确定玄武岩层的范围,并确定可能影响和控制研究区地下水运动的地下断层和裂缝。获得了二维地震剖面,结果表明研究区的地下存在重大断层。将地震结果与钻探井进行比较时,我们获得了良好的匹配。作为补充工具,电阻率法被用来检测地下水位。电阻率法的结果表明,已识别出六个不同的层。对这六层的解释表明,截面的前三层,第四层,第五层和底部指示了各种地下结构和岩性。各种玄武岩层,断裂玄武岩,风化的地下层和新鲜玄武岩层。显然,地球物理调查的最终成功取决于与其他地下数据源的组合,以便生成准确的地图。

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