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桩承式加筋路堤三角形布桩下的荷载传递机理

王亚东 陈超骏 刘小三 刘齐建 邓涛 陆宸羽 林聪煜

长江科学院院报2024,Vol.41Issue(12):138-146,154,10.
长江科学院院报2024,Vol.41Issue(12):138-146,154,10.DOI:10.11988/ckyyb.20230721

桩承式加筋路堤三角形布桩下的荷载传递机理

Load Transfer Mechanism of Reinforced Embankment with Triangular Array of Piles

王亚东 1陈超骏 1刘小三 1刘齐建 2邓涛 3陆宸羽 2林聪煜2

作者信息

  • 1. 中电建路桥集团有限公司,北京 100160
  • 2. 湖南大学土木工程学院,长沙 410082
  • 3. 福州大学土木工程学院,福州 350108
  • 折叠

摘要

Abstract

This paper presents an improved concentric arches model using the equivalence method for pile caps.The load transfer efficiency of geosynthetic-reinforced piled embankments with a triangular arrangement of piles is inves-tigated.The pile cap with circular or square cross-sections is considered equivalent to a regular hexagon.The model is composed of three two-dimensional semicircular soil arches formed over the strip area between adjacent piles.A three-dimensional hemispherical soil arch is developed over the triangular area between three adjacent piles.Consid-ering the geogrid deflects in a parabolic shape and the consolidation coefficient of the soil reaction,the frictional and adhesive tensions between the soil and the geogrid are obtained.The load transfer efficiency of the pile is inves-tigated by considering the effects of the soil arch and the tensile membrane.Comparisons of the present solution re-sults with those from available analytical methods and standards ensure its accuracy and feasibility.Parametric stud-ies show that the load transfer efficiency decreases exponentially with an increase in the subgrade reaction coefficient and increases slightly with an increase in the consolidation coefficient of the soil.The effects of the soil arch and membrane tension increase sharply at first and then become constant as the embankment height increases.

关键词

桩承式加筋路堤/三角形布桩/同心半球土拱/土拱效应/拉膜效应

Key words

load-bearing reinforced piled embankment/triangular pile arrangement/concentric spherical soil arc-hing/soil arching effect/membrane effect

分类

建筑与水利

引用本文复制引用

王亚东,陈超骏,刘小三,刘齐建,邓涛,陆宸羽,林聪煜..桩承式加筋路堤三角形布桩下的荷载传递机理[J].长江科学院院报,2024,41(12):138-146,154,10.

基金项目

国家自然科学基金面上项目(52178331) (52178331)

长江科学院院报

OA北大核心CSTPCD

1001-5485

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