Numerical Simulation Research on the Vertical Bearing Capacity of the Single Pile Foundation in Zhugensha Sea Area

[Introduction] Wind power projects in Jiangsu Province are mainly located in the offshore radiant sandbank sea area. It is of great significance to study the bearing capacity of the large diameter single pile in this stratum. [Method] Based on the test pile test of the steel pipe pile in the radiant...

Full description

Bibliographic Details
Main Authors: ZHANG Qiang, GE Chang, SHEN Xiaolei, SHANG Jin
Format: Article
Language:English
Published: Energy Observer Magazine Co., Ltd. 2021-09-01
Series:南方能源建设
Subjects:
Online Access:https://www.energychina.press/en/article/doi/10.16516/j.gedi.issn2095-8676.2021.03.006
id doaj-f01649d8ce0e4d6c8f8bd3a3e0d73c83
record_format Article
spelling doaj-f01649d8ce0e4d6c8f8bd3a3e0d73c832021-09-30T10:06:44ZengEnergy Observer Magazine Co., Ltd.南方能源建设2095-86762021-09-0183445010.16516/j.gedi.issn2095-8676.2021.03.006Numerical Simulation Research on the Vertical Bearing Capacity of the Single Pile Foundation in Zhugensha Sea AreaZHANG Qiang0GE Chang1SHEN Xiaolei2SHANG Jin3POWER CHINA HUADONG Engineering Co., Ltd., Hangzhou 311120, ChinaOcean College, Zhejiang University, Zhoushan 316021, ChinaPOWER CHINA HUADONG Engineering Co., Ltd., Hangzhou 311120, ChinaPOWER CHINA HUADONG Engineering Co., Ltd., Hangzhou 311120, China[Introduction] Wind power projects in Jiangsu Province are mainly located in the offshore radiant sandbank sea area. It is of great significance to study the bearing capacity of the large diameter single pile in this stratum. [Method] Based on the test pile test of the steel pipe pile in the radiant sandbank area, the FLAC3D numerical model of the single pile foundation was established, and the numerical simulation study of bearing performance of steel pipe pile foundations with different diameters was carried out. [Result] The results show that: The vertical load-displacement (Q-s) curve of the steel pipe obtained by FLAC3D numerical simulation is basically consistent with the change trend of the measured curve; as the burial depth increases, the axial force of the pile body below the mud surface continuously decreases. Most of the axial bearing capacity is provided by the pile side friction, and the axial bearing capacity borne by the pile tip resistance is relatively small; the pile diameter and the ultimate vertical bearing capacity of steel pipe piles conform to a non-sexual relationship. The ultimate vertical bearing capacity of a single pile increases with the increase of the pile diameter. When the pile diameter increases by 2 times, the corresponding vertical ultimate load increases by 3 times. [Conclusion] The corresponding results can provide reference for practical engineering.https://www.energychina.press/en/article/doi/10.16516/j.gedi.issn2095-8676.2021.03.006offshore wind powersteel pipe pilepile diametervertical bearing capacityflac3d
collection DOAJ
language English
format Article
sources DOAJ
author ZHANG Qiang
GE Chang
SHEN Xiaolei
SHANG Jin
spellingShingle ZHANG Qiang
GE Chang
SHEN Xiaolei
SHANG Jin
Numerical Simulation Research on the Vertical Bearing Capacity of the Single Pile Foundation in Zhugensha Sea Area
南方能源建设
offshore wind power
steel pipe pile
pile diameter
vertical bearing capacity
flac3d
author_facet ZHANG Qiang
GE Chang
SHEN Xiaolei
SHANG Jin
author_sort ZHANG Qiang
title Numerical Simulation Research on the Vertical Bearing Capacity of the Single Pile Foundation in Zhugensha Sea Area
title_short Numerical Simulation Research on the Vertical Bearing Capacity of the Single Pile Foundation in Zhugensha Sea Area
title_full Numerical Simulation Research on the Vertical Bearing Capacity of the Single Pile Foundation in Zhugensha Sea Area
title_fullStr Numerical Simulation Research on the Vertical Bearing Capacity of the Single Pile Foundation in Zhugensha Sea Area
title_full_unstemmed Numerical Simulation Research on the Vertical Bearing Capacity of the Single Pile Foundation in Zhugensha Sea Area
title_sort numerical simulation research on the vertical bearing capacity of the single pile foundation in zhugensha sea area
publisher Energy Observer Magazine Co., Ltd.
series 南方能源建设
issn 2095-8676
publishDate 2021-09-01
description [Introduction] Wind power projects in Jiangsu Province are mainly located in the offshore radiant sandbank sea area. It is of great significance to study the bearing capacity of the large diameter single pile in this stratum. [Method] Based on the test pile test of the steel pipe pile in the radiant sandbank area, the FLAC3D numerical model of the single pile foundation was established, and the numerical simulation study of bearing performance of steel pipe pile foundations with different diameters was carried out. [Result] The results show that: The vertical load-displacement (Q-s) curve of the steel pipe obtained by FLAC3D numerical simulation is basically consistent with the change trend of the measured curve; as the burial depth increases, the axial force of the pile body below the mud surface continuously decreases. Most of the axial bearing capacity is provided by the pile side friction, and the axial bearing capacity borne by the pile tip resistance is relatively small; the pile diameter and the ultimate vertical bearing capacity of steel pipe piles conform to a non-sexual relationship. The ultimate vertical bearing capacity of a single pile increases with the increase of the pile diameter. When the pile diameter increases by 2 times, the corresponding vertical ultimate load increases by 3 times. [Conclusion] The corresponding results can provide reference for practical engineering.
topic offshore wind power
steel pipe pile
pile diameter
vertical bearing capacity
flac3d
url https://www.energychina.press/en/article/doi/10.16516/j.gedi.issn2095-8676.2021.03.006
work_keys_str_mv AT zhangqiang numericalsimulationresearchontheverticalbearingcapacityofthesinglepilefoundationinzhugenshaseaarea
AT gechang numericalsimulationresearchontheverticalbearingcapacityofthesinglepilefoundationinzhugenshaseaarea
AT shenxiaolei numericalsimulationresearchontheverticalbearingcapacityofthesinglepilefoundationinzhugenshaseaarea
AT shangjin numericalsimulationresearchontheverticalbearingcapacityofthesinglepilefoundationinzhugenshaseaarea
_version_ 1716863287755276288