首页> 外文期刊>Environmental earth sciences >Integration of electrical resistivity imaging (ERI) and ground-penetrating radar (GPR) methods to identify soil profile around Necatibey Subway Station, Ankara, Turkey
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Integration of electrical resistivity imaging (ERI) and ground-penetrating radar (GPR) methods to identify soil profile around Necatibey Subway Station, Ankara, Turkey

机译:集成电阻率成像(ERI)和探地雷达(GPR)方法,以识别土耳其安卡拉Necatibey地铁站周围的土壤剖面

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Electrical Resistivity Imaging (ERI) and Ground-Penetrating Radar (GPR) methods were utilized in this study to identify soil profiles around Necatibey Subway Station of Kizilay-C, ayyolu metro line, Ankara, Turkey. The Necatibey Metro Station is located within the alluvial deposits of Dikmen stream and the so-called Ankara clay. At the metro station, a number of boreholes were drilled. However, due to the spacing of the boreholes the boundary between alluvium and Ankara clay deposits could not be separated precisely. Thus, in this study, ERI and GPR methods were utilized to distinguish soil types at the study area. GPR measurements were taken from a total of 14 profiles and total length of the profiles was about 320 m. For every ERI measurement section, Schlumberger Dipole-Dipole, Dipole-Dipole, Schlumberger and Wenner arrays were used. Results from the geophysical measurements identified that the fill materials are underlain by the Dikmen stream channel deposits, which consist of silty clay and gravelly sand units. The study also shows that the Dikmen stream channel deposits are underlain by the Ankara clay unit. The meaningful range of resistivity values was between 1 and 15 Omega m, and the GPR signals were strong in sandy units while they attenuated in clayey environments. Based on borehole logs, ERI and GPR data, three-dimensional lithological subsurface model of the survey area was constructed. The resultant three-dimensional diagrams may serve engineers as a practical tool during different construction stages, groundwater-surface water interactions within short and long term, and probable remedial measures.
机译:在这项研究中,电阻率成像(ERI)和探地雷达(GPR)方法被用于识别土耳其安卡拉ayyolu地铁线Kizilay-C的Necatibey地铁站周围的土壤剖面。 Necatibey地铁站位于Dikmen流和所谓的Ankara粘土冲积层中。在地铁站,钻了许多孔。然而,由于井眼的间隔,冲积层和安卡拉粘土沉积物之间的边界无法精确分离。因此,在这项研究中,ERI和GPR方法被用来区分研究区域的土壤类型。 GPR测量是从总共14个剖面中进行的,剖面的总长度约为320 m。对于每个ERI测量部分,均使用Schlumberger偶极子,偶极子,斯伦贝谢和Wenner阵列。地球物理测量结果表明,填充物被Dikmen河道沉积物所覆盖,后者由粉质粘土和砾石砂单元组成。研究还表明,Dikmen河道的沉积物被安卡拉黏土单元所覆盖。电阻率值的有意义范围在1至15Ωm之间,GPR信号在沙质单位中很强,而在黏性环境中则衰减。基于钻孔测井,ERI和GPR数据,构建了勘察区三维岩性地下模型。生成的三维图可在不同的施工阶段,短期和长期内地下水与地表水的相互作用以及可能的补救措施期间,为工程师提供实用工具。

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