Application of 2D and 3D geoelectrical resistivity imaging for engineering site investigation in a crystalline basement terrain, southwestern Nigeria
Orthogonal set of 2D geoelectrical resistivity field data, consisting of six parallel and five perpendicular profiles, were collected in an investigation site using the conventional Wenner array. Seven Schlumberger soundings were also conducted on the site to provide ID layering information and supp...
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| Veröffentlicht in: | Environmental earth sciences Jg. 61; H. 7; S. 1481 - 1492 |
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01.10.2010
Springer Springer Nature B.V |
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| ISSN: | 1866-6280, 1866-6299 |
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| Abstract | Orthogonal set of 2D geoelectrical resistivity field data, consisting of six parallel and five perpendicular profiles, were collected in an investigation site using the conventional Wenner array. Seven Schlumberger soundings were also conducted on the site to provide ID layering information and supplement the orthogonal 2D profiles. The observed 2D apparent resistivity data were first processed individually and then collated into 3D data set which was processed using a 3D inversion code. The 3D model resistivity images obtained from the inversion are presented as horizontal depth slices. Some distortions observed in the 2D images from the inversion of the 2D profiles are not observed in the 2D images extracted from the 3D inversion. The survey was conducted with the aim of investigating the degree of weathering and fracturing in the weathered profile, and thereby ascertaining the suitability of the site for engineering constructions as well as determining its groundwater potential. |
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| AbstractList | Orthogonal set of 2D geoelectrical resistivity field data, consisting of six parallel and five perpendicular profiles, were collected in an investigation site using the conventional Wenner array. Seven Schlumberger soundings were also conducted on the site to provide ID layering information and supplement the orthogonal 2D profiles. The observed 2D apparent resistivity data were first processed individually and then collated into 3D data set which was processed using a 3D inversion code. The 3D model resistivity images obtained from the inversion are presented as horizontal depth slices. Some distortions observed in the 2D images from the inversion of the 2D profiles are not observed in the 2D images extracted from the 3D inversion. The survey was conducted with the aim of investigating the degree of weathering and fracturing in the weathered profile, and thereby ascertaining the suitability of the site for engineering constructions as well as determining its groundwater potential. Orthogonal set of 2D geoelectrical resistivity field data, consisting of six parallel and five perpendicular profiles, were collected in an investigation site using the conventional Wenner array. Seven Schlumberger soundings were also conducted on the site to provide ID layering information and supplement the orthogonal 2D profiles. The observed 2D apparent resistivity data were first processed individually and then collated into 3D data set which was processed using a 3D inversion code. The 3D model resistivity images obtained from the inversion are presented as horizontal depth slices. Some distortions observed in the 2D images from the inversion of the 2D profiles are not observed in the 2D images extracted from the 3D inversion. The survey was conducted with the aim of investigating the degree of weathering and fracturing in the weathered profile, and thereby ascertaining the suitability of the site for engineering constructions as well as determining its groundwater potential.[PUBLICATION ABSTRACT] |
| Author | Singh, V. S. Aizebeokhai, Ahzegbobor Philips Olayinka, A. I. |
| Author_xml | – sequence: 1 givenname: Ahzegbobor Philips surname: Aizebeokhai fullname: Aizebeokhai, Ahzegbobor Philips email: Philips_a_aizebeokhai@yahoo.co.uk organization: Department of Physics, Covenant University – sequence: 2 givenname: A. I. surname: Olayinka fullname: Olayinka, A. I. organization: Department of Geology, University of Ibadan – sequence: 3 givenname: V. S. surname: Singh fullname: Singh, V. S. organization: National Geophysical Research Institute |
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| Cites_doi | 10.1111/j.1365-2478.1992.tb00536.x 10.1029/2000WR900284 10.1016/0926-9851(93)90005-J 10.1111/j.1365-2478.1996.tb00142.x 10.1007/s10040-001-0160-x 10.1071/EG01152 10.1144/GSL.QJEG.1987.020.04.02 10.2113/gseegeosci.12.3.261 10.1111/j.1365-246X.1994.tb03277.x 10.1190/1.1442813 10.1111/j.1365-2478.1996.tb00162.x 10.1016/S0926-9851(97)00030-X 10.3997/1365-2397.1990008 |
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| Keywords | Engineering investigations Geoelectrical Orthogonal profiles Resistivity Imaging 2D and 3D inversion basement inverse problem data processing ground water apparent resistivity sounding fracturing depth aquifers imagery three-dimensional models two-dimensional models electrical resistivity distortion |
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| SubjectTerms | Biogeosciences Crystallization Earth and Environmental Science Earth Sciences Earth, ocean, space Environmental Science and Engineering Exact sciences and technology Field study Geochemistry Geoengineering Geology Geophysics: general, magnetic, electric and thermic methods and properties Groundwater potential Hydrogeology Hydrology. Hydrogeology Hydrology/Water Resources Internal geophysics Original Article Terrestrial Pollution |
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| Title | Application of 2D and 3D geoelectrical resistivity imaging for engineering site investigation in a crystalline basement terrain, southwestern Nigeria |
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| Volume | 61 |
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