Integral Analysis of Seismic Refraction and Ambient Vibration Survey for Subsurface Profile Evaluation

Geotechnical site investigation as known as subsurface profile evaluation is the process of subsurface layer characteristics determination which finally used for design and construction phase. Traditionally, site investigation was performed using drilling technique thus suffers from several limitati...

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Main Authors: Z. A. M., Hazreek, A. F., Kamarudin, S., Rosli, A., Fauziah, M. A. K., Akmal, M., Aziman, A. T. S., Azhar, M. I. M., Ashraf, M. Z. N., Shaylinda, Y., Rais, M. F., Ishak, M. N. A., Alel
Format: Conference or Workshop Item
Language:English
Published: IOP Publishing 2018
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/35690/1/Integral%20Analysis%20of%20Seismic%20Refraction.pdf
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author Z. A. M., Hazreek
A. F., Kamarudin
S., Rosli
A., Fauziah
M. A. K., Akmal
M., Aziman
A. T. S., Azhar
M. I. M., Ashraf
M. Z. N., Shaylinda
Y., Rais
M. F., Ishak
M. N. A., Alel
author_facet Z. A. M., Hazreek
A. F., Kamarudin
S., Rosli
A., Fauziah
M. A. K., Akmal
M., Aziman
A. T. S., Azhar
M. I. M., Ashraf
M. Z. N., Shaylinda
Y., Rais
M. F., Ishak
M. N. A., Alel
author_sort Z. A. M., Hazreek
collection UMP
description Geotechnical site investigation as known as subsurface profile evaluation is the process of subsurface layer characteristics determination which finally used for design and construction phase. Traditionally, site investigation was performed using drilling technique thus suffers from several limitation due to cost, time, data coverage and sustainability. In order to overcome those problems, this study adopted surface techniques using seismic refraction and ambient vibration method for subsurface profile depth evaluation. Seismic refraction data acquisition and processing was performed using ABEM Terraloc and OPTIM software respectively. Meanwhile ambient vibration data acquisition and processing was performed using CityShark II, Lennartz and GEOPSY software respectively. It was found that studied area consist of two layers representing overburden and bedrock geomaterials based on p-wave velocity value (vp = 300 – 2500 m/s and vp > 2500 m/s) and natural frequency value (Fo = 3.37 – 3.90 Hz) analyzed. Further analysis found that both methods show some good similarity in term of depth and thickness with percentage accuracy at 60 – 97%. Consequently, this study has demonstrated that the application of seismic refractin and ambient vibration method was applicable in subsurface profile depth and thickness estimation. Moreover, surface technique which consider as non-destructive method adopted in this study was able to compliment conventional drilling method in term of cost, time, data coverage and environmental sustainaibility.
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spelling UMPir356902022-11-15T03:53:51Z http://umpir.ump.edu.my/id/eprint/35690/ Integral Analysis of Seismic Refraction and Ambient Vibration Survey for Subsurface Profile Evaluation Z. A. M., Hazreek A. F., Kamarudin S., Rosli A., Fauziah M. A. K., Akmal M., Aziman A. T. S., Azhar M. I. M., Ashraf M. Z. N., Shaylinda Y., Rais M. F., Ishak M. N. A., Alel TA Engineering (General). Civil engineering (General) Geotechnical site investigation as known as subsurface profile evaluation is the process of subsurface layer characteristics determination which finally used for design and construction phase. Traditionally, site investigation was performed using drilling technique thus suffers from several limitation due to cost, time, data coverage and sustainability. In order to overcome those problems, this study adopted surface techniques using seismic refraction and ambient vibration method for subsurface profile depth evaluation. Seismic refraction data acquisition and processing was performed using ABEM Terraloc and OPTIM software respectively. Meanwhile ambient vibration data acquisition and processing was performed using CityShark II, Lennartz and GEOPSY software respectively. It was found that studied area consist of two layers representing overburden and bedrock geomaterials based on p-wave velocity value (vp = 300 – 2500 m/s and vp > 2500 m/s) and natural frequency value (Fo = 3.37 – 3.90 Hz) analyzed. Further analysis found that both methods show some good similarity in term of depth and thickness with percentage accuracy at 60 – 97%. Consequently, this study has demonstrated that the application of seismic refractin and ambient vibration method was applicable in subsurface profile depth and thickness estimation. Moreover, surface technique which consider as non-destructive method adopted in this study was able to compliment conventional drilling method in term of cost, time, data coverage and environmental sustainaibility. IOP Publishing 2018 Conference or Workshop Item PeerReviewed pdf en cc_by http://umpir.ump.edu.my/id/eprint/35690/1/Integral%20Analysis%20of%20Seismic%20Refraction.pdf Z. A. M., Hazreek and A. F., Kamarudin and S., Rosli and A., Fauziah and M. A. K., Akmal and M., Aziman and A. T. S., Azhar and M. I. M., Ashraf and M. Z. N., Shaylinda and Y., Rais and M. F., Ishak and M. N. A., Alel (2018) Integral Analysis of Seismic Refraction and Ambient Vibration Survey for Subsurface Profile Evaluation. In: Journal of Physics: Conference Series, International Seminar on Mathematics and Physics in Sciences and Technology (ISMAP 2017) , 28-29 October 2017 , Batu Pahat, Johor. pp. 1-12., 995 (012073). ISSN 1742-6596 (Published) https://doi.org/10.1088/1742-6596/995/1/012073
spellingShingle TA Engineering (General). Civil engineering (General)
Z. A. M., Hazreek
A. F., Kamarudin
S., Rosli
A., Fauziah
M. A. K., Akmal
M., Aziman
A. T. S., Azhar
M. I. M., Ashraf
M. Z. N., Shaylinda
Y., Rais
M. F., Ishak
M. N. A., Alel
Integral Analysis of Seismic Refraction and Ambient Vibration Survey for Subsurface Profile Evaluation
title Integral Analysis of Seismic Refraction and Ambient Vibration Survey for Subsurface Profile Evaluation
title_full Integral Analysis of Seismic Refraction and Ambient Vibration Survey for Subsurface Profile Evaluation
title_fullStr Integral Analysis of Seismic Refraction and Ambient Vibration Survey for Subsurface Profile Evaluation
title_full_unstemmed Integral Analysis of Seismic Refraction and Ambient Vibration Survey for Subsurface Profile Evaluation
title_short Integral Analysis of Seismic Refraction and Ambient Vibration Survey for Subsurface Profile Evaluation
title_sort integral analysis of seismic refraction and ambient vibration survey for subsurface profile evaluation
topic TA Engineering (General). Civil engineering (General)
url http://umpir.ump.edu.my/id/eprint/35690/1/Integral%20Analysis%20of%20Seismic%20Refraction.pdf
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