Geophysical, Geotechnical, and Geochemical Characterization of Subgrade Materials Along Six Road Corridors in Ondo and Edo States, Southern Nigeria

dc.contributor.authorAmiwero, Daniel Tuoyo
dc.date.accessioned2026-08-13T15:39:13Z
dc.date.issued2026-08-13
dc.descriptionThis deposit consists of a single Excel workbook (Amiwero_PhD_Dataset_v3.xlsx) with four sheets: a README describing the survey methodology and data provenance; VES_Station_Data, giving the fitted geoelectric model, curve type, and resistivity at 1.5 m depth for all 95 vertical electrical sounding stations; VES_Field_Curves, giving the raw digitized apparent-resistivity readings behind each fitted model for 92 of the 95 stations; and Geochemical_ECEC_ESI_Data, giving cation exchange capacity, conductivity, and Expansive Soil Index for 50 soil samples. This dataset accompanies ongoing manuscripts derived from the author's PhD research and is provided to support independent verification of the reported geophysical and geotechnical relationships.
dc.description.abstractThis dataset presents geophysical, geotechnical, and geochemical data collected to evaluate subgrade material integrity along approximately 180 km of road corridors across Ondo and Edo States, southern Nigeria, spanning six corridors: Ondo-Ore, Ore-Irele, Auchi-Okpella, Auchi-Igarra, Igarra-Ibillo, and Ibillo-Okene. At each of 95 stations, I conducted a Vertical Electrical Sounding (VES) using a Schlumberger electrode array (ABEM Terrameter SAS 1000, maximum current electrode separation 20 m) and collected a soil sample at 1.5 m depth for laboratory testing. The dataset includes station coordinates; the digitized field apparent-resistivity curve for 92 of the 95 stations; the fitted three-layer geoelectric model (layer resistivity and thickness) for all 95 stations; the resulting VES curve type (A, H, K, or Q) and resistivity at 1.5 m depth, independently re-derived and verified from the original inversion software output for every station; measured California Bearing Ratio (CBR, %) and the corresponding Subgrade Strength Classification band (Road Note 31, Transport Research Laboratory 1993); and, for 50 samples along four of the six corridors, geochemical properties including effective cation exchange capacity, electrical conductivity, Expansive Soil Index, and clay content. The data support ongoing research on using near-surface geophysical methods, in combination with geotechnical and geochemical soil properties, to predict subgrade strength for flexible pavement design.
dc.description.sponsorshipThis research received no external grant or institutional funding and was personally funded by you. If the field is free text, you could write "Self-funded; no external sponsor.
dc.identifier.citationAmiwero, D. T. (2026). Geophysical, Geotechnical, and Geochemical Characterization of Subgrade Materials Along Six Road Corridors in Ondo and Edo States, Southern Nigeria [Data set]. Nigeria Maritime University. [URL/DOI to be inserted once assigned]
dc.identifier.urihttps://repository.nmu.edu.ng/handle/123456789/590
dc.language.isoen
dc.publisherNigeria Maritime University
dc.subjectVertical Electrical Sounding (VES)
dc.subjectElectrical Resistivity
dc.subjectVES Curve Type
dc.subjectSubgrade Materials
dc.subjectCalifornia Bearing Ratio (CBR)
dc.subjectSubgrade Strength Classification
dc.subjectLateritic Soil
dc.subjectFlexible Pavement Design
dc.subjectCation Exchange Capacity (ECEC)
dc.subjectRoad Geotechnics
dc.subjectExpansive Soil Index
dc.subjectOndo State
dc.subjectNigeria
dc.subjectEdo State
dc.subjectNear-Surface Geophysics
dc.subjectSouthern Nigeria
dc.titleGeophysical, Geotechnical, and Geochemical Characterization of Subgrade Materials Along Six Road Corridors in Ondo and Edo States, Southern Nigeria
dc.typeDataset

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