Incorporating Setup Effects into the Reliability Analysis of Driven Piles

Driven-pile setup is referred to a phenomenon in which the bearing capacity of driven piles increases with time after the end of driving (EOD). The setup effect can significantly improve the bearing capacity (ultimate resistance) of driven piles after initial installation, especially the ultimate sh...

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Main Authors: Xiaoya Bian, Jiawei Chen, Xixuan Bai, Kunpeng Zheng
Format: Article
Language:English
Published: MDPI AG 2021-12-01
Series:Applied Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-3417/12/1/2
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author Xiaoya Bian
Jiawei Chen
Xixuan Bai
Kunpeng Zheng
author_facet Xiaoya Bian
Jiawei Chen
Xixuan Bai
Kunpeng Zheng
author_sort Xiaoya Bian
collection DOAJ
description Driven-pile setup is referred to a phenomenon in which the bearing capacity of driven piles increases with time after the end of driving (EOD). The setup effect can significantly improve the bearing capacity (ultimate resistance) of driven piles after initial installation, especially the ultimate shaft resistance. Based on the reliability theory and considering the setup effects of driven piles, this article presents an increase factor (<i>M</i><sub>setup</sub>) for the ultimate resistance of driven piles to modify the reliability index calculation formula. At the same time, the correlation between <i>R</i><sub>0</sub> and <i>R</i><sub>setup</sub> is comprehensively considered in the reliability index calculation. Next, the uncertainty analysis of load and resistance is conducted to determine the ranges of relevant parameters. Meanwhile, the influence of four critical parameters (factor of safety FOS, the ratio of dead load to live load <i>ρ</i> = <i>Q</i><sub>D</sub>/<i>Q</i><sub>L</sub>, <i>M</i><sub>setup</sub>, the correlation coefficient between <i>R</i><sub>0</sub> and <i>R</i><sub>setup</sub>, and <i>ρ</i><sub>R0,Rsetup</sub>) on reliability index are analyzed. This parametric study indicates that <i>ρ</i> has a slight influence on the reliability index. However, the reliability index is significantly influenced by FOS, <i>M</i><sub>setup</sub>, and <i>ρ</i><sub>R0,Rsetup</sub>. Finally, by comparisons with the existing results, it is concluded that the formula proposed in this study is reasonable, and more uncertainties are considered to make the calculated reliability index closer to a practical engineering application. The presented formula clearly expresses the incorporation of the pile setup effect into reliability index calculation, and it is conducive to improving the prediction accuracy of the design capacity of driven piles. Therefore, the reliability analysis of driven piles considering setup effects will present a theoretical basis for the application of driven piles in engineering practice.
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spelling doaj.art-a0f82e678d2e4d82be785ebb814b3aa42023-11-23T11:06:08ZengMDPI AGApplied Sciences2076-34172021-12-01121210.3390/app12010002Incorporating Setup Effects into the Reliability Analysis of Driven PilesXiaoya Bian0Jiawei Chen1Xixuan Bai2Kunpeng Zheng3School of Civil Engineering and Architecture, Wuhan Institute of Technology, Wuhan 430074, ChinaSchool of Civil Engineering and Architecture, Wuhan Institute of Technology, Wuhan 430074, ChinaSchool of Civil Engineering and Architecture, Wuhan Institute of Technology, Wuhan 430074, ChinaSchool of Civil Engineering and Architecture, Wuhan Institute of Technology, Wuhan 430074, ChinaDriven-pile setup is referred to a phenomenon in which the bearing capacity of driven piles increases with time after the end of driving (EOD). The setup effect can significantly improve the bearing capacity (ultimate resistance) of driven piles after initial installation, especially the ultimate shaft resistance. Based on the reliability theory and considering the setup effects of driven piles, this article presents an increase factor (<i>M</i><sub>setup</sub>) for the ultimate resistance of driven piles to modify the reliability index calculation formula. At the same time, the correlation between <i>R</i><sub>0</sub> and <i>R</i><sub>setup</sub> is comprehensively considered in the reliability index calculation. Next, the uncertainty analysis of load and resistance is conducted to determine the ranges of relevant parameters. Meanwhile, the influence of four critical parameters (factor of safety FOS, the ratio of dead load to live load <i>ρ</i> = <i>Q</i><sub>D</sub>/<i>Q</i><sub>L</sub>, <i>M</i><sub>setup</sub>, the correlation coefficient between <i>R</i><sub>0</sub> and <i>R</i><sub>setup</sub>, and <i>ρ</i><sub>R0,Rsetup</sub>) on reliability index are analyzed. This parametric study indicates that <i>ρ</i> has a slight influence on the reliability index. However, the reliability index is significantly influenced by FOS, <i>M</i><sub>setup</sub>, and <i>ρ</i><sub>R0,Rsetup</sub>. Finally, by comparisons with the existing results, it is concluded that the formula proposed in this study is reasonable, and more uncertainties are considered to make the calculated reliability index closer to a practical engineering application. The presented formula clearly expresses the incorporation of the pile setup effect into reliability index calculation, and it is conducive to improving the prediction accuracy of the design capacity of driven piles. Therefore, the reliability analysis of driven piles considering setup effects will present a theoretical basis for the application of driven piles in engineering practice.https://www.mdpi.com/2076-3417/12/1/2driven pilesbearing capacitysetupreliabilitycorrelation coefficient
spellingShingle Xiaoya Bian
Jiawei Chen
Xixuan Bai
Kunpeng Zheng
Incorporating Setup Effects into the Reliability Analysis of Driven Piles
Applied Sciences
driven piles
bearing capacity
setup
reliability
correlation coefficient
title Incorporating Setup Effects into the Reliability Analysis of Driven Piles
title_full Incorporating Setup Effects into the Reliability Analysis of Driven Piles
title_fullStr Incorporating Setup Effects into the Reliability Analysis of Driven Piles
title_full_unstemmed Incorporating Setup Effects into the Reliability Analysis of Driven Piles
title_short Incorporating Setup Effects into the Reliability Analysis of Driven Piles
title_sort incorporating setup effects into the reliability analysis of driven piles
topic driven piles
bearing capacity
setup
reliability
correlation coefficient
url https://www.mdpi.com/2076-3417/12/1/2
work_keys_str_mv AT xiaoyabian incorporatingsetupeffectsintothereliabilityanalysisofdrivenpiles
AT jiaweichen incorporatingsetupeffectsintothereliabilityanalysisofdrivenpiles
AT xixuanbai incorporatingsetupeffectsintothereliabilityanalysisofdrivenpiles
AT kunpengzheng incorporatingsetupeffectsintothereliabilityanalysisofdrivenpiles