Design charts and equations of the frictional resistance of single pipe pile under static and seismic loads

Foundations can be exposed to seismic loads in addition to static loads in seismic active areas. Thus, it might be necessary in this situation to use deep foundations rather than shallow foundations in order to prevent bearing capacity failure, improve the system's dynamic stiffness, and/or min...

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Published in:International Journal of Computational Materials Science and Engineering
Main Author: Al-Jeznawi D.; Jais I.B.M.; Albusoda B.S.; Alzabeebee S.; Keawsawasvong S.; Khalid N.
Format: Article
Language:English
Published: World Scientific 2024
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85165215682&doi=10.1142%2fS2047684123500276&partnerID=40&md5=c882389349e8d52f9fc4c1302dcb9bf1
id 2-s2.0-85165215682
spelling 2-s2.0-85165215682
Al-Jeznawi D.; Jais I.B.M.; Albusoda B.S.; Alzabeebee S.; Keawsawasvong S.; Khalid N.
Design charts and equations of the frictional resistance of single pipe pile under static and seismic loads
2024
International Journal of Computational Materials Science and Engineering
13
3
10.1142/S2047684123500276
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85165215682&doi=10.1142%2fS2047684123500276&partnerID=40&md5=c882389349e8d52f9fc4c1302dcb9bf1
Foundations can be exposed to seismic loads in addition to static loads in seismic active areas. Thus, it might be necessary in this situation to use deep foundations rather than shallow foundations in order to prevent bearing capacity failure, improve the system's dynamic stiffness, and/or minimize dynamic oscillations. In a seismically active area, the pile designer is expected to obtain at least the maximum earthquake-induced frictional resistance of the pile in order to achieve the necessary strength to ensure the structural integrity of the pipe pile is not compromised. However, determining the frictional resistance of the pipe pile is considered challenging. Therefore, in this study, design charts and new equations have been proposed to provide straightforward means to the designers to predict the frictional resistance of pipe piles embedded in dry and saturated cohesionless soils. The proposed charts and equations are for closed ended (CE) and open ended (OE) pipe piles. The charts have been developed based on the results of a validated three-dimensional finite element analysis. In addition, the equations were developed using regression analysis, where a high coefficient of correlation values is obtained (ranging between 0.94 and 0.98). The proposed predictive tools could assist designers in preliminary checks of the frictional capacity of pipe piles in seismic active areas. © 2024 World Scientific Publishing Europe Ltd.
World Scientific
20476841
English
Article

author Al-Jeznawi D.; Jais I.B.M.; Albusoda B.S.; Alzabeebee S.; Keawsawasvong S.; Khalid N.
spellingShingle Al-Jeznawi D.; Jais I.B.M.; Albusoda B.S.; Alzabeebee S.; Keawsawasvong S.; Khalid N.
Design charts and equations of the frictional resistance of single pipe pile under static and seismic loads
author_facet Al-Jeznawi D.; Jais I.B.M.; Albusoda B.S.; Alzabeebee S.; Keawsawasvong S.; Khalid N.
author_sort Al-Jeznawi D.; Jais I.B.M.; Albusoda B.S.; Alzabeebee S.; Keawsawasvong S.; Khalid N.
title Design charts and equations of the frictional resistance of single pipe pile under static and seismic loads
title_short Design charts and equations of the frictional resistance of single pipe pile under static and seismic loads
title_full Design charts and equations of the frictional resistance of single pipe pile under static and seismic loads
title_fullStr Design charts and equations of the frictional resistance of single pipe pile under static and seismic loads
title_full_unstemmed Design charts and equations of the frictional resistance of single pipe pile under static and seismic loads
title_sort Design charts and equations of the frictional resistance of single pipe pile under static and seismic loads
publishDate 2024
container_title International Journal of Computational Materials Science and Engineering
container_volume 13
container_issue 3
doi_str_mv 10.1142/S2047684123500276
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85165215682&doi=10.1142%2fS2047684123500276&partnerID=40&md5=c882389349e8d52f9fc4c1302dcb9bf1
description Foundations can be exposed to seismic loads in addition to static loads in seismic active areas. Thus, it might be necessary in this situation to use deep foundations rather than shallow foundations in order to prevent bearing capacity failure, improve the system's dynamic stiffness, and/or minimize dynamic oscillations. In a seismically active area, the pile designer is expected to obtain at least the maximum earthquake-induced frictional resistance of the pile in order to achieve the necessary strength to ensure the structural integrity of the pipe pile is not compromised. However, determining the frictional resistance of the pipe pile is considered challenging. Therefore, in this study, design charts and new equations have been proposed to provide straightforward means to the designers to predict the frictional resistance of pipe piles embedded in dry and saturated cohesionless soils. The proposed charts and equations are for closed ended (CE) and open ended (OE) pipe piles. The charts have been developed based on the results of a validated three-dimensional finite element analysis. In addition, the equations were developed using regression analysis, where a high coefficient of correlation values is obtained (ranging between 0.94 and 0.98). The proposed predictive tools could assist designers in preliminary checks of the frictional capacity of pipe piles in seismic active areas. © 2024 World Scientific Publishing Europe Ltd.
publisher World Scientific
issn 20476841
language English
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