Penetration Resistance of Skirt-Tip with Rough Base for Suction Caissons in Clay

被引:0
作者
Yu-qi Wu
Da-yong Li
Qing Yang
机构
[1] Dalian University of Technology,State Key Laboratory of Coastal and Offshore Engineering
[2] Fuzhou University,College of Civil Engineering
[3] Shandong University of Science and Technology,College of Civil Engineering and Architecture
来源
China Ocean Engineering | 2020年 / 34卷
关键词
suction caisson; required suction pressure; penetration resistance; skirt-tip; rough base; clay;
D O I
暂无
中图分类号
学科分类号
摘要
Suction caissons can readily penetrate into the seabed under the combination of the self-weight and suction resulted from the encased water being increasingly pumped out. During suction-assisted penetration, the equivalent overburden at the skirt-tip level outside the caisson is generally higher than that inside because the vertical stress within the soil plug is reduced by the exerted suction. This may result in a uniform shear stress developing over the base of the skirt-tip as the soil below the skirt-tip tends to move into the caisson, which leads to an asymmetric failure wedge existing below the base of the skirt-tip. Besides, different adhesion factors along the inside (α1) and outside (αo) of the skirt wall will cause asymmetric plastic zones inside and outside the caisson. Accordingly, an asymmetric failure mechanism is therefore proposed to calculate the penetration resistance of the skirt-tip. The proposed failure mechanism is the first to consider the effect of different adhesion factors (αi) and (αo) on the failure mechanism at the skirt-tip, and involves the contribution from the weighted average of equivalent overburdens inside and outside caisson at the skirt-tip level. The required suction pressure can be obtained in terms of force equilibrium of the caisson in a vertical direction. Finally, the asymmetric failure mechanism at the skirt-tip is validated with the FE calculations. By comparing with the measured data, the predictions of the required suction pressure are found to be in good agreement with the experimental results.
引用
收藏
页码:784 / 794
页数:10
相关论文
共 51 条
[11]  
Wang LZ(1955)Influence of roughness of base and ground-water conditions on the ultimate bearing capacity of foundations Géotechnique 5 227-242
[12]  
Yuan F(1963)Some recent research on the bearing capacity of foundations Canadian Geotechnical Journal 1 16-26
[13]  
Li LL(2018)Determination of maximum penetration depth of suction caissons in sand KSCE Journal of Civil Engineering 22 2776-2783
[14]  
Hossain MS(2019)Theoretical studies on penetration resistance of suction caissons in clay Marine Georesources and Geotechnology 37 558-567
[15]  
Lehane BM(2020)Solution to critical suction pressure of penetrating suction caissons into clay using limit analysis Applied Ocean Research 101 102264-100
[16]  
Hu Y(2016)Experimental study on installation of hybrid bucket foundations for offshore wind turbines in silty clay Ocean Engineering 114 87-1357
[17]  
Gao Y(2006)Large deformation analysis of suction caisson installation in clay Canadian Geotechnical Journal 43 1344-undefined
[18]  
Houlsby GT(undefined)undefined undefined undefined undefined-undefined
[19]  
Byrne BW(undefined)undefined undefined undefined undefined-undefined
[20]  
Houlsby GT(undefined)undefined undefined undefined undefined-undefined