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海洋平台桩基注浆加固水泥土抗剪强度试验研究

陈同彦 吴敏 冯春健 杨宝山 王腾 崔永强

海洋科学2025,Vol.49Issue(3):84-92,9.
海洋科学2025,Vol.49Issue(3):84-92,9.DOI:10.11759/hykx20240421001

海洋平台桩基注浆加固水泥土抗剪强度试验研究

Experimental study on the shear strength of cemented soil by grouting in offshore platform pile foundations

陈同彦 1吴敏 2冯春健 1杨宝山 2王腾 3崔永强3

作者信息

  • 1. 中石化石油工程设计有限公司,山东 东营 257206
  • 2. 中国石化胜利油田分公司海洋采油厂,山东 东营 257237
  • 3. 中国石油大学(华东)石油工程学院,山东 青岛 266580
  • 折叠

摘要

Abstract

To investigate the bearing capacity enhancement of offshore platform piles through cemented reinforce-ment,with a focus on cemented silt.A systematic experimental program involving 24 direct shear tests were carried out to quantify the coupled effects of cement content and consolidation pressure on shear strength evolution.The results showed that the shear strength of the specimens increased continuously with the cement content.The shear strength of the sample with a 15%cement content was increased by 140%-209%compared to uncemented silt,and that of the sample with a 25%cement content was increased by 160%-246%.The strength parameters of cemented soil(cohesion and friction angle)displayed a linearly increasing relationship with the cement content.At the same cement content,higher consolidation pressures improved particle interlocking between cement and soil,leading to increased shear strength.When the consolidation pressure was increased by 150 kPa under the same cement content,the cohesion increased by 6%-12.5%and the friction angle by 9.6%-14.3%.Numerical calculations for the bearing capacity of pile foundations at Chengdao Oilfield offshore platforms revealed that the ultimate bearing capacity increased from 2 967 kN(uncemented)to 5 379 kN(cemented),marking an 81.29%improvement.This demon-strates the significant efficacy of grouting technology in enhancing pile foundation performance.

关键词

粉土/桩基/水泥掺入比/固结压力/直剪试验

Key words

silt/pile/cement content/consolidation pressure/direct shear test

分类

海洋科学

引用本文复制引用

陈同彦,吴敏,冯春健,杨宝山,王腾,崔永强..海洋平台桩基注浆加固水泥土抗剪强度试验研究[J].海洋科学,2025,49(3):84-92,9.

基金项目

国家自然科学基金项目(52078483)the National Natural Science Foundation of China,No.52078483 (52078483)

海洋科学

OA北大核心

1000-3096

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