INVESTIGATION OF STABILITY OF ENGINEERING PROJECTS USING SEISMIC REFRACTION TECHNIQUE

Seismic refraction survey was conducted at Ibiono Ibom Local government area of Akwa Ibom State, Nigeria, using 12 channels ES 3000S enhancement seismograph. This was done to evaluate and obtained information on depth and thickness of the shallow subsurface and characterized the bearing and engineer...

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Main Authors: Mfoniso U. Aka, Moses M. M. Ekpa, Doris O. Okoroh, Bethrand E. Oguama, Johnson C. Ibuot
Format: Article
Language:English
Published: Zibeline International 2020-07-01
Series:Geological Behavior
Subjects:
Online Access:https://geologicalbehavior.com/archives/2gbr2020/2gbr2020-84-88.pdf
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spelling doaj-35d5c228b9844421992adc513553fe162020-11-25T04:09:12ZengZibeline InternationalGeological Behavior2521-08902521-04912020-07-0142848810.26480/gbr.02.2020.84.88INVESTIGATION OF STABILITY OF ENGINEERING PROJECTS USING SEISMIC REFRACTION TECHNIQUEMfoniso U. AkaMoses M. M. EkpaDoris O. OkorohBethrand E. OguamaJohnson C. IbuotSeismic refraction survey was conducted at Ibiono Ibom Local government area of Akwa Ibom State, Nigeria, using 12 channels ES 3000S enhancement seismograph. This was done to evaluate and obtained information on depth and thickness of the shallow subsurface and characterized the bearing and engineering parameters on the bases of soil and rock competencies for stability of engineering works. The travel times of refracted waves measured were used to calculate P and S wave velocities employed in the evaluation of bearing strength and engineering parameters. The results revealed that seismic waves penetrated into three layers. The values of depth and thickness for upper layer ranged from 0.0 m to 4.5 m and 4.5 m, middle layer ranged from 5.0 m to 12.5 m and 7.5, lower layer ranged from 15.0 m to 25.2 m and 10.2 m. The bearing capacity parameters calculated were allowable bearing capacity and ultimate bearing capacity, engineering parameters: Concentration Index, Stress Ratio, Material Index and Density Gradient. The third layer reflected good competent soil and rock quality in the southeastern part of the study area, and was delineated as a better layer for engineering stability.https://geologicalbehavior.com/archives/2gbr2020/2gbr2020-84-88.pdfallowable bearing capacityultimate bearing capacityengineering parametersfoundation.
collection DOAJ
language English
format Article
sources DOAJ
author Mfoniso U. Aka
Moses M. M. Ekpa
Doris O. Okoroh
Bethrand E. Oguama
Johnson C. Ibuot
spellingShingle Mfoniso U. Aka
Moses M. M. Ekpa
Doris O. Okoroh
Bethrand E. Oguama
Johnson C. Ibuot
INVESTIGATION OF STABILITY OF ENGINEERING PROJECTS USING SEISMIC REFRACTION TECHNIQUE
Geological Behavior
allowable bearing capacity
ultimate bearing capacity
engineering parameters
foundation.
author_facet Mfoniso U. Aka
Moses M. M. Ekpa
Doris O. Okoroh
Bethrand E. Oguama
Johnson C. Ibuot
author_sort Mfoniso U. Aka
title INVESTIGATION OF STABILITY OF ENGINEERING PROJECTS USING SEISMIC REFRACTION TECHNIQUE
title_short INVESTIGATION OF STABILITY OF ENGINEERING PROJECTS USING SEISMIC REFRACTION TECHNIQUE
title_full INVESTIGATION OF STABILITY OF ENGINEERING PROJECTS USING SEISMIC REFRACTION TECHNIQUE
title_fullStr INVESTIGATION OF STABILITY OF ENGINEERING PROJECTS USING SEISMIC REFRACTION TECHNIQUE
title_full_unstemmed INVESTIGATION OF STABILITY OF ENGINEERING PROJECTS USING SEISMIC REFRACTION TECHNIQUE
title_sort investigation of stability of engineering projects using seismic refraction technique
publisher Zibeline International
series Geological Behavior
issn 2521-0890
2521-0491
publishDate 2020-07-01
description Seismic refraction survey was conducted at Ibiono Ibom Local government area of Akwa Ibom State, Nigeria, using 12 channels ES 3000S enhancement seismograph. This was done to evaluate and obtained information on depth and thickness of the shallow subsurface and characterized the bearing and engineering parameters on the bases of soil and rock competencies for stability of engineering works. The travel times of refracted waves measured were used to calculate P and S wave velocities employed in the evaluation of bearing strength and engineering parameters. The results revealed that seismic waves penetrated into three layers. The values of depth and thickness for upper layer ranged from 0.0 m to 4.5 m and 4.5 m, middle layer ranged from 5.0 m to 12.5 m and 7.5, lower layer ranged from 15.0 m to 25.2 m and 10.2 m. The bearing capacity parameters calculated were allowable bearing capacity and ultimate bearing capacity, engineering parameters: Concentration Index, Stress Ratio, Material Index and Density Gradient. The third layer reflected good competent soil and rock quality in the southeastern part of the study area, and was delineated as a better layer for engineering stability.
topic allowable bearing capacity
ultimate bearing capacity
engineering parameters
foundation.
url https://geologicalbehavior.com/archives/2gbr2020/2gbr2020-84-88.pdf
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AT bethrandeoguama investigationofstabilityofengineeringprojectsusingseismicrefractiontechnique
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