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负斜桩顶部水平受拉响应及p-y曲线特征试验研究 被引量:4
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作者 周德泉 蔡强 +3 位作者 王创业 朱沁 周毅 李留玺 《湖南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2023年第1期198-207,共10页
为研究倾斜桩的水平受拉响应特征,在模型砂土中设置0°、10°、20°倾斜桩及桩底嵌岩20°倾斜桩,桩顶施加水平拉力,拉力方向与倾斜方向相反,测试4根模型桩的水平位移、应变片与土压力盒应变,获得桩身水平位移、弯矩、... 为研究倾斜桩的水平受拉响应特征,在模型砂土中设置0°、10°、20°倾斜桩及桩底嵌岩20°倾斜桩,桩顶施加水平拉力,拉力方向与倾斜方向相反,测试4根模型桩的水平位移、应变片与土压力盒应变,获得桩身水平位移、弯矩、土抗力和p-y曲线特征随倾斜角和桩底约束条件的变化规律.结果表明:1)桩顶水平受拉时,随着倾斜角的增加,负斜桩顶部水平位移逐渐增大,弯矩峰值随之增大,而土抗力峰值逐渐减小,土抗力峰值点位置逐渐降低,单桩的水平承载力随之降低,抗弯能力减小;2)随着桩底约束程度的提高,负斜桩顶部水平位移减小,桩身弯矩峰值、土抗力峰值减小,单桩水平承载力增大,抗弯能力增强;3)水平荷载作用下,本模型的负斜桩破坏模式为“转动+弯曲”,转动点位置随倾斜角的减小或桩底约束程度的提高而下降;4)0°~20°负斜主动桩p-y曲线可采用p/p_(ub)=α(y/y_(50))^(β)进行拟合,倾斜角与桩底约束程度对α影响不大,倾斜角对β值变化幅度影响较小,β值变化幅度随桩底约束程度提高而降低. 展开更多
关键词 基工程 负斜桩 主动 P-Y曲线 模型试验
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Finite element analysis of couple effect of soil displacement and axial load on single inclined pile 被引量:1
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作者 王丽 郑刚 欧若楠 《Journal of Central South University》 SCIE EI CAS 2014年第9期3656-3664,共9页
The couple effect of soil displacement and axial load on the single inclined pile in cases of surcharge load and uniform soil movement is discussed in detail with the methods of full-scale field tests and finite eleme... The couple effect of soil displacement and axial load on the single inclined pile in cases of surcharge load and uniform soil movement is discussed in detail with the methods of full-scale field tests and finite element method. Parametric analyses including the degree of inclination and the distance between soil and pile are carried out herein. When the displacement of soil on the left side and right side of a pile is identical, deformation of a vertical pile and an inclined pile is highly close in both cases of surcharge load and uniform soil movement. When the couple effect of soil displacement and axial load occurs, settlement of an inclined pile is greater than that of a vertical pile under the same axial load, and bearing capacity of an inclined pile is smaller than that of a vertical pile. This is quite different from the case when the inclined pile is not affected by soil displacement. For inclined piles, P-Δ effect of axial load would lead to a large increase in bending moment, however, for the vertical pile, P-Δ effect of axial load can be neglected. Although the direction of inclination of piles is reverse, deformation of piles caused by uniform soil movement is totally the same. For the inclined piles discussed herein, bending moment(-8 m to-17 m under the ground) relies heavily on uniform soil movement and does not change during the process of applying axial load. When the thickness of soil is less than the pile length, the greater the thickness of soil, the larger the bending moment at lower part of the inclined pile. When the thickness of soil is larger than the pile length, bending moment at lower part of the inclined pile is zero. 展开更多
关键词 couple effect inclined pile surcharge load uniform soil movement axial load
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