Engineering Site Investigation and Shallow Foundation Design in Ore Area of Ondo State, Nigeria

The study integrates geophysical and geotechnical methods for subsoil evaluation and shallow foundation design. The study involved six vertical electrical sounding and geotechnical investigation involving cone penetration test and laboratory soil analysis. Three major geologic units were delineated;...

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Main Author: Olumuyiwa O. Falowo
Format: Article
Language:English
Published: Sciendo 2020-06-01
Series:Materials and Geoenvironment
Subjects:
Online Access:https://doi.org/10.2478/rmzmag-2020-0004
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spelling doaj-a3e9602cc20640dcbfbdbd811155bfe82021-09-05T14:01:28ZengSciendoMaterials and Geoenvironment1854-74002020-06-01671213310.2478/rmzmag-2020-0004rmzmag-2020-0004Engineering Site Investigation and Shallow Foundation Design in Ore Area of Ondo State, NigeriaOlumuyiwa O. Falowo0Department of Civil Engineering Technology, Faculty of Engineering Technology, Rufus Giwa Polytechnic, Owo, Ondo State, NigeriaThe study integrates geophysical and geotechnical methods for subsoil evaluation and shallow foundation design. The study involved six vertical electrical sounding and geotechnical investigation involving cone penetration test and laboratory soil analysis. Three major geologic units were delineated; the topsoil, weathered layer and partly weathered/fractured/fresh bedrock. The overburden thickness is in between 15.2–32.9 m. Based on resistivity (16–890 ohm-m) and thickness (12.7–32 m) the weathered layer is competent to distribute structural load to underlying soil/rock. The groundwater level varies from 4.5 to 12.3 m. Therefore an average allowable bearing capacity of 200 kPa is recommended and would be appropriate for design of shallow foundation in the area, at a depth not less than 1.0 m with an expected settlement ranging from 9.03–48.20 mm. The ultimate bearing and allowable bearing capacity for depth levels of 1–3 m vary from 1403–2666 kPa and 468–889 kPa for strip footing while square footing varies in between 1956–3489 kPa and 652–1163 kPa respectively.https://doi.org/10.2478/rmzmag-2020-0004cone penetration testvertical electrical soundingsettlement analysisbearing capacityore southwesternpreizkus s statičnim konusnim penetrometromnavpično električno sondiranjeanaliza posedkovnosilnost taljz ore
collection DOAJ
language English
format Article
sources DOAJ
author Olumuyiwa O. Falowo
spellingShingle Olumuyiwa O. Falowo
Engineering Site Investigation and Shallow Foundation Design in Ore Area of Ondo State, Nigeria
Materials and Geoenvironment
cone penetration test
vertical electrical sounding
settlement analysis
bearing capacity
ore southwestern
preizkus s statičnim konusnim penetrometrom
navpično električno sondiranje
analiza posedkov
nosilnost tal
jz ore
author_facet Olumuyiwa O. Falowo
author_sort Olumuyiwa O. Falowo
title Engineering Site Investigation and Shallow Foundation Design in Ore Area of Ondo State, Nigeria
title_short Engineering Site Investigation and Shallow Foundation Design in Ore Area of Ondo State, Nigeria
title_full Engineering Site Investigation and Shallow Foundation Design in Ore Area of Ondo State, Nigeria
title_fullStr Engineering Site Investigation and Shallow Foundation Design in Ore Area of Ondo State, Nigeria
title_full_unstemmed Engineering Site Investigation and Shallow Foundation Design in Ore Area of Ondo State, Nigeria
title_sort engineering site investigation and shallow foundation design in ore area of ondo state, nigeria
publisher Sciendo
series Materials and Geoenvironment
issn 1854-7400
publishDate 2020-06-01
description The study integrates geophysical and geotechnical methods for subsoil evaluation and shallow foundation design. The study involved six vertical electrical sounding and geotechnical investigation involving cone penetration test and laboratory soil analysis. Three major geologic units were delineated; the topsoil, weathered layer and partly weathered/fractured/fresh bedrock. The overburden thickness is in between 15.2–32.9 m. Based on resistivity (16–890 ohm-m) and thickness (12.7–32 m) the weathered layer is competent to distribute structural load to underlying soil/rock. The groundwater level varies from 4.5 to 12.3 m. Therefore an average allowable bearing capacity of 200 kPa is recommended and would be appropriate for design of shallow foundation in the area, at a depth not less than 1.0 m with an expected settlement ranging from 9.03–48.20 mm. The ultimate bearing and allowable bearing capacity for depth levels of 1–3 m vary from 1403–2666 kPa and 468–889 kPa for strip footing while square footing varies in between 1956–3489 kPa and 652–1163 kPa respectively.
topic cone penetration test
vertical electrical sounding
settlement analysis
bearing capacity
ore southwestern
preizkus s statičnim konusnim penetrometrom
navpično električno sondiranje
analiza posedkov
nosilnost tal
jz ore
url https://doi.org/10.2478/rmzmag-2020-0004
work_keys_str_mv AT olumuyiwaofalowo engineeringsiteinvestigationandshallowfoundationdesigninoreareaofondostatenigeria
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