Investigation of the dynamic vertical behaviour of a floating pile embedded in unsaturated poroelastic half-space

This paper proposes an analytical solution for investigating the dynamic vertical behaviour of a floating pile in unsaturated poroelastic half-space by considering the dynamic properties of the soil below the pile base. The pile shaft resistance is derived by applying Hankel integral transformation...

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Main Authors: Ma, Wenjie, Leong, Eng Choon, Wang, Binglong, Zhou, Shunhua, Wang, Changdan
Other Authors: School of Civil and Environmental Engineering
Format: Article
Language:English
Published: 2023
Subjects:
Online Access:https://hdl.handle.net/10356/172031
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1720312023-11-20T02:08:34Z Investigation of the dynamic vertical behaviour of a floating pile embedded in unsaturated poroelastic half-space Ma, Wenjie Leong, Eng Choon Wang, Binglong Zhou, Shunhua Wang, Changdan School of Civil and Environmental Engineering Engineering::Civil engineering Vertical Vibration Unsaturated Soil This paper proposes an analytical solution for investigating the dynamic vertical behaviour of a floating pile in unsaturated poroelastic half-space by considering the dynamic properties of the soil below the pile base. The pile shaft resistance is derived by applying Hankel integral transformation to the governing equations, and the pile base resistance is derived by introducing the potential function and operator decomposition methods. The dynamic interaction between the soil and the pile is considered by virtue of the impedance function. To account for the mixed boundary conditions of the pile-soil interface, an analytical solution for the vertical dynamic response of a floating pile is derived in the frequency domain. Additionally, by utilizing the inverse Fourier transform and convolution theorem, a quasi-analytical solution for the velocity response of the floating pile is derived in the time domain. Furthermore, the derived solution is verified through comparisons with existing solutions available in the literature. Finally, a parametric study is performed to investigate the influence of saturation and intrinsic permeability on the dynamic flexibility coefficient of porous unsaturated half-space, the influence of saturation on the dynamic impedance of the soil layer, and slenderness ratio on the vertical behaviour of floating pile and end-bearing pile. This research was supported by the National Natural Science Foundation of China (Grant No. 51778485), the scientific research project of Shanghai Science and Technology Commission (Grant No.19DZ1201004), and China Scholarship Council (CSC Grant No. 202206260126). 2023-11-20T02:08:33Z 2023-11-20T02:08:33Z 2023 Journal Article Ma, W., Leong, E. C., Wang, B., Zhou, S. & Wang, C. (2023). Investigation of the dynamic vertical behaviour of a floating pile embedded in unsaturated poroelastic half-space. Ocean Engineering, 280, 114629-. https://dx.doi.org/10.1016/j.oceaneng.2023.114629 0029-8018 https://hdl.handle.net/10356/172031 10.1016/j.oceaneng.2023.114629 2-s2.0-85153197421 280 114629 en Ocean Engineering © 2023 Elsevier Ltd. All rights reserved.
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Engineering::Civil engineering
Vertical Vibration
Unsaturated Soil
spellingShingle Engineering::Civil engineering
Vertical Vibration
Unsaturated Soil
Ma, Wenjie
Leong, Eng Choon
Wang, Binglong
Zhou, Shunhua
Wang, Changdan
Investigation of the dynamic vertical behaviour of a floating pile embedded in unsaturated poroelastic half-space
description This paper proposes an analytical solution for investigating the dynamic vertical behaviour of a floating pile in unsaturated poroelastic half-space by considering the dynamic properties of the soil below the pile base. The pile shaft resistance is derived by applying Hankel integral transformation to the governing equations, and the pile base resistance is derived by introducing the potential function and operator decomposition methods. The dynamic interaction between the soil and the pile is considered by virtue of the impedance function. To account for the mixed boundary conditions of the pile-soil interface, an analytical solution for the vertical dynamic response of a floating pile is derived in the frequency domain. Additionally, by utilizing the inverse Fourier transform and convolution theorem, a quasi-analytical solution for the velocity response of the floating pile is derived in the time domain. Furthermore, the derived solution is verified through comparisons with existing solutions available in the literature. Finally, a parametric study is performed to investigate the influence of saturation and intrinsic permeability on the dynamic flexibility coefficient of porous unsaturated half-space, the influence of saturation on the dynamic impedance of the soil layer, and slenderness ratio on the vertical behaviour of floating pile and end-bearing pile.
author2 School of Civil and Environmental Engineering
author_facet School of Civil and Environmental Engineering
Ma, Wenjie
Leong, Eng Choon
Wang, Binglong
Zhou, Shunhua
Wang, Changdan
format Article
author Ma, Wenjie
Leong, Eng Choon
Wang, Binglong
Zhou, Shunhua
Wang, Changdan
author_sort Ma, Wenjie
title Investigation of the dynamic vertical behaviour of a floating pile embedded in unsaturated poroelastic half-space
title_short Investigation of the dynamic vertical behaviour of a floating pile embedded in unsaturated poroelastic half-space
title_full Investigation of the dynamic vertical behaviour of a floating pile embedded in unsaturated poroelastic half-space
title_fullStr Investigation of the dynamic vertical behaviour of a floating pile embedded in unsaturated poroelastic half-space
title_full_unstemmed Investigation of the dynamic vertical behaviour of a floating pile embedded in unsaturated poroelastic half-space
title_sort investigation of the dynamic vertical behaviour of a floating pile embedded in unsaturated poroelastic half-space
publishDate 2023
url https://hdl.handle.net/10356/172031
_version_ 1783955500681920512