School of Civil Engineering and Geomatics, Shang Dong University of Technology, Zibo, Shandong Province, China.
School of Transportation Science and Engineering, Jilin Jianzhu University, Changchun, Jilin Province, China.
PLoS One. 2023 Sep 21;18(9):e0291719. doi: 10.1371/journal.pone.0291719. eCollection 2023.
The pile with ram-compacted bearing sphere (PRBS)is a kind of special-shaped pile, the calculation formula of single pile bearing capacity stipulated in Chinese Standards JGJ/T 135-2018 is relatively simple, and the factors considered are not comprehensive enough. This article uses the finite element simulation software ABAQUS to simulate and calculate the compressive bearing characteristics of PRBS, and studies the changes in the vertical bearing characteristics of PRBS under different factors and working conditions (different pile lengths, pile diameters, and the diameters of ram-compacted bearing sphere (RBS)). The calculation results indicate that the PRBS still has a large axial force near the enlarged end of the pile bottom, and the RBS bears a large load. The vertical bearing capacity of the PRBS is mainly provided by the RBS, but the pile side friction still has a certain degree of influence on its bearing capacity. The maximum ratio of pile side frictional resistance to applied load can reach 18.41%. Compared with the ordinary pile, the bearing capacity of the PRBS is significantly improved. The ultimate bearing capacity of the PRBS with the RBS diameter of 1m is more than 5 times that of the ordinary pile under the same condition. Pile diameter has little influence on the bearing capacity of PRBS, while the change of RBS diameter has great influence on the bearing capacity of single pile. However, when the RBS diameter is too large, it is easy to cause the uplift of surrounding soil in the construction process and affect surrounding piles. Therefore, it is suggested that the optimal RBS diameter should be 800mm~1200mm. This study provides reference suggestions for the study of piles with ram-compacted bearing sphere.
扩底承力球桩(PRBS)是一种异形桩,中国标准 JGJ/T 135-2018 中规定的单桩承载力计算公式比较简单,考虑的因素不够全面。本文采用有限元模拟软件 ABAQUS 对 PRBS 的抗压承载特性进行模拟计算,研究不同因素和工况(不同桩长、桩径和扩底承力球(RBS)直径)下 PRBS 的竖向承载特性变化。计算结果表明,PRBS 在桩底扩大端附近仍具有较大的轴向力,且 RBS 承受较大的荷载。PRBS 的竖向承载力主要由 RBS 提供,但桩侧摩阻力对其承载力仍有一定程度的影响。桩侧摩阻力与施加荷载的最大比值可达 18.41%。与普通桩相比,PRBS 的承载力有显著提高。在相同条件下,RBS 直径为 1m 的 PRBS 的极限承载力是普通桩的 5 倍以上。桩径对 PRBS 的承载力影响较小,而 RBS 直径的变化对单桩承载力影响较大。但是,当 RBS 直径过大时,施工过程中容易引起周围土体的隆起,影响周围桩。因此,建议 RBS 的最佳直径应为 800mm~1200mm。本研究为扩底承力球桩的研究提供了参考建议。