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黄河下游冲积地层PHC管桩后注浆抗压承载性能原位试验研究

邵广彪 付唐国 蒋天琪 陈琳琳 刘曰伟

河南理工大学学报(自然科学版)2026,Vol.45Issue(4):1-10,10.
河南理工大学学报(自然科学版)2026,Vol.45Issue(4):1-10,10.DOI:10.16186/j.cnki.1673-9787.2025010003

黄河下游冲积地层PHC管桩后注浆抗压承载性能原位试验研究

In-situ test study on compressive bearing capacity of PHC pipe pile post grouting in alluvial strata of the lower Yellow River

邵广彪 1付唐国 2蒋天琪 3陈琳琳 4刘曰伟4

作者信息

  • 1. 山东建筑大学 土木工程学院,山东 济南 250101||山东建筑大学 建筑结构加固改造与地下空间工程教育部重点实验室,山东 济南 250101
  • 2. 山东建筑大学 土木工程学院,山东 济南 250101
  • 3. 山东鼎兴基础工程股份有限公司,山东 济宁 272000
  • 4. 山东建筑大学工程鉴定加固研究院有限公司,山东 济南 250013
  • 折叠

摘要

Abstract

Objectives To solve the problems of poor soil squeezing effect and low side resistance of PHC pipe piles caused by short deposition time and high sensitivity of alluvial strata in the lower reaches of the Yellow River,an experimental study on the compressive bearing capacity of PHC pipe piles after grouting under these stratum conditions was conducted.Methods The post-grouting method and the test pile length were selected as variables,and in-situ tests were carried out based on a project under construction.The post-grouting methods were pile-end post-grouting and combined pile-end and pile-side post-grouting,and a non-grouting control group was set.Piles of 15 m and 19 m in length were installed,with three test piles in each group.The bearing layers were silty clay and silt,respectively.Each group included a combined post-grouting pile,a pile-end post-grouting pile,and non-grouting pile.Strain gauges were attached to the test pile shafts,and load cells were installed at the pile ends.Static load tests were conducted to investigate the variation in pile resistance.Results Compared with the control group,the ultimate bearing capacity of the combined post-grouting test piles increased by 77%(15 m)and 55%(19 m),respectively,while that of the pile-end post-grouting test piles increased by 26%(15 m)and 19%(19 m).After combined post-grouting,the side resistance of the silt layer increased by 96%,and that of the silty clay layer increased by 64%.The pile-soil relative displacement required for the side resistance of the lower soil to reach the limit increased from 5~7 mm to 15~20 mm.When silt was the bearing layer,the improvement in end resis-tance was better than that of the silty clay:combined post-grouting increased end resistance by 84%,and pile-end post-grouting increased by 52%.Conclusions PHC pipe pile post-grouting technology is suitable for alluvial strata in the lower reaches of the Yellow River.It can effectively improve the compressive bear-ing capacity of PHC pipe piles,enhance pile stability,and improve the elastoplastic deformation behavior of the pile-soil system.The results can be directly used to guide engineering practice.

关键词

黄河下游冲积地层/PHC管桩/桩端后注浆/桩端桩侧复式后注浆/原位试验/抗压承载特性

Key words

alluvial strata in the lower reaches of the Yellow River/PHC pipe piles/pile-end post-grouting/combined pile-end and pile-side post grouting/in-situ test/compressive bearing characteristics

分类

建筑与水利

引用本文复制引用

邵广彪,付唐国,蒋天琪,陈琳琳,刘曰伟..黄河下游冲积地层PHC管桩后注浆抗压承载性能原位试验研究[J].河南理工大学学报(自然科学版),2026,45(4):1-10,10.

基金项目

国家自然科学基金资助项目(52038006) (52038006)

河南理工大学学报(自然科学版)

1673-9787

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