Redirigiendo al acceso original de articulo en 18 segundos...
Inicio  /  Applied Sciences  /  Vol: 14 Par: 2 (2024)  /  Artículo
ARTÍCULO
TITULO

The Horizontal Bearing Characteristics and Microscopic Soil Deformation Mechanism of Pile-Bucket Composite Foundation in Sand

Xin Zhang    
Dongmin Yu    
Kaifei Zhu    
Aolai Zhao and Minghao Ren    

Resumen

The pile-bucket composite foundation represents an innovative foundation form that surpasses the horizontal bearing performance of both single bucket-shaped foundations and pile foundations. The intricate interplay between piles and buckets introduces the complexity of the factors influencing the bearing performance of composite foundations under horizontal loads. In this paper, the indoor model tests were conducted to investigate the effects of relative density and pile-to-barrel diameter ratio on the horizontal bearing capacity and surrounding soil pressure of the pile-bucket composite foundation. A sensitivity analysis on the bearing characteristics of the pile-bucket foundation was performed using ABAQUS/CAE 2020 software. The results reveal a consistent variation in load?displacement curves across diverse diameter ratios of piles to buckets. The pile-bucket diameter ratio significantly impacts the horizontal bearing characteristics of the composite foundation. Reducing the pile-bucket diameter ratio improves the horizontal bearing capacity of the composite foundation. When the diameter ratio of piles to buckets diminishes to =0.317, the influence of this ratio on bearing performance becomes markedly pronounced. The displacement range of the surface soil decreases with an increase in relative density, while the influence depth of the surrounding soil of the composite foundation significantly decreases as the pile-to-barrel diameter ratio decreases.

 Artículos similares

       
 
Walid Chaabani, Mohamed Saddek Remadna and Murad Abu-Farsakh    
The presence of underground voids within a failure zone usually results in a reduction in the bearing capacity of footings. This paper presents results for the ultimate bearing capacity ratio, qu/?B, of a strip footing on top of a sand layer overlying a ... ver más
Revista: Infrastructures

 
Michele Conconi, Filippo De Carli, Matteo Berni, Nicola Sancisi, Vincenzo Parenti-Castelli and Giuseppe Monetti    
The in-vivo quantification of knee motion in physiological loading conditions is paramount for the understanding of the joint?s natural behavior and the comprehension of articular disorders. Dynamic MRI (DMRI) represents an emerging technology that makes... ver más
Revista: Applied Sciences

 
Jiwei Luo, Xiaoqiang Liu, Xianpeng Liu, Dianjun Zuo, Xiaoyu An and Liqiang Yu    
Anchorage failure of a suction anchor is more likely to occur in low-strength muddy clay. This paper focuses on the failure behaviors of suction anchors and muddy clay stress responses. The centrifugal model test was used to study the loading processes o... ver más

 
Qingsheng Meng, Yang Li, Wenjing Wang, Yuhong Chen and Shilin Wang    
Silt liquefaction can occur due to the rapid cyclic loading of sediments. This can result in the loss of the bearing capacity of the underlying sediments and damage to the foundations and infrastructure. Therefore, assessing liquefaction hazards is an im... ver más

 
Dengqun Wang, Shuaihua Ye and Jun Zhang    
The construction of an urban metro will inevitably involve deep excavation. Risk assessment before deep excavation, risk reduction measures, and real-time monitoring during excavation can effectively ensure the safety of deep excavation. Taking the deep ... ver más
Revista: Water