兰州理工大学学报 ›› 2023, Vol. 49 ›› Issue (5): 142-149.

• 建筑科学 • 上一篇    下一篇

基于数值模拟的斜桩群桩水平和竖向承载特性分析

宋永刚*1, 王金科2   

  1. 1.甘肃第三建设集团公司, 甘肃 兰州 730000;
    2.甘肃建投建设有限公司, 甘肃 兰州 730050
  • 收稿日期:2023-03-24 出版日期:2023-10-28 发布日期:2023-11-07
  • 通讯作者: 宋永刚(1986-),男,甘肃秦安人,高级工程师. Email:493721754@qq.com
  • 基金资助:
    甘肃省自然科学基金(22JR5RA286)

Analysis of horizontal and vertical bearing characteristics of inclined pile group based on numerical simulation

SONG Yong-gang1, WANG Jin-ke2   

  1. 1. Gansu Third Construction Group Company, Lanzhou 730000;
    2. Gansu Construction Investment Construction Co. Ltd., Lanzhou 730050
  • Received:2023-03-24 Online:2023-10-28 Published:2023-11-07

摘要: 斜桩具有较高的水平承载力,广泛应用于跨海大桥、码头、风力发电站等承受较大水平荷载的构筑物.为研究斜桩群桩的水平承载特性和竖向承载特性,针对2×2斜桩群桩和3×3斜桩群桩,基于ABAQUS建立有限元数值模型,在利用试验验证模型正确性的基础上,分别对两种群桩斜桩模型的水平承载特性和竖向承载特性展开研究,结果表明:对于两种群桩模型,在桩身倾角处于0~21°内,桩身倾斜角越大,桩在相同竖向荷载下的沉降越小,桩在相同水平荷载下的位移越小,设置斜桩能够有效提高群桩的竖向承载能力和水平承载能力;在同一工况下,相同位置桩的桩身位移曲线相近,桩身水平位移随着桩身位置的下降而变小,由于水平荷载产生的位移和桩旋转产生的位移耦合的影响,部分桩在桩底附近发生了与加载方向相反的位移;对于2×2群桩模型和3×3群桩模型,单桩数量的增加并不会导致承载力的等比增大,水平受荷群斜桩也会发生类似于竖向受荷桩的“群桩效应”.

关键词: 群桩斜桩, 有限元分析, 桩身应力, 桩身侧移

Abstract: Inclined pile, which has a relatively high horizontal bearing capacity, is widely used in cross-sea bridge, wharf, wind power station and other structures. In order to study the horizontal and vertical bearing characteristics of the inclined pile group, the finite element numerical model of 2×2 inclined pile group and 3×3 inclined pile group was established based on ABAQUS, and their horizontal and vertical bearing characteristics were studied respectively on the basis of verifying the correctness of the models by experiments. The results shows that: For the two pile group models, the larger the pile inclination angle (within 0~21°) is, the smaller the pile settlement under the same vertical load and the smaller the pile displacement under the same horizontal load. Inclined pile can effectively improve the vertical and horizontal bearing capacity of pile group. Under the same working condition, the pile displacements of the same position are similar, and the horizontal displacement of the pile decreases along the depth direction of the pile length. Due to the coupling effect of the displacement generated by the horizontal load and the displacement generated by the pile rotation, some piles have displacement in the direction opposite to the loading direction near the pile bottom. For the 2×2 pile group model and 3×3 pile group model, the increase of the number of piles does not lead to the proportional increase of the bearing capacity, and the “pile group effect” of horizontal loaded inclined pile group is similar to that of vertical loaded pile group.

Key words: pile group inclined pile, finite element analysis, pile stress, the displacement of the pile

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