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基于SPH-FEM耦合算法的膨胀管磨铣动力学分析

罗敏 黄聪剑 徐亭亭 李巧珍 贠清源

计算力学学报2026,Vol.43Issue(3):379-386,8.
计算力学学报2026,Vol.43Issue(3):379-386,8.DOI:10.7511/jslx20250605001

基于SPH-FEM耦合算法的膨胀管磨铣动力学分析

Dynamic analysis of expansion tube milling based on SPH-FEM coupling algorithm

罗敏 1黄聪剑 1徐亭亭 1李巧珍 1贠清源1

作者信息

  • 1. 东北石油大学机械科学与工程学院,大庆 163318
  • 折叠

摘要

Abstract

In casing-damaged wells repaired with expandable liner patching,the patched section tends to deform under formation pressure,causing wellbore shrinkage and subsequent stuck drilling incidents that disrupt production.Milling the expandable liner becomes necessary to restore the wellbore diameter.The milling process exhibits strong nonlinear characteristics in the dynamic contact between abrasive grains and the expandable liner,while chip separation and movement involve complex fracture and flow behaviors.Significant challenges arise from large deformations,material removal,and mesh distortion.To address these issues,this study developed a milling dynamics model and a numerical simulation method using a coupled SPH-FEM algorithm,incorporating the expandable liner,casing,cement ring,and abrasive shoe.Comparison with experimental data showed an 8.29%error in grinding force,validating the model's accuracy.Dynamic analysis of multi-pass milling under constant depth revealed that a 4-pass milling strategy reduced the peak equivalent stress in the expandable liner by 29.70%and decreased grinding force by 63.90%,effectively mitigating bit sticking and drilling jamming risks.

关键词

膨胀管/磨铣/SPH-FEM耦合算法/动力学

Key words

expansion tube/milling/SPH-FEM coupling algorithm/dynamics/contact

分类

能源科技

引用本文复制引用

罗敏,黄聪剑,徐亭亭,李巧珍,贠清源..基于SPH-FEM耦合算法的膨胀管磨铣动力学分析[J].计算力学学报,2026,43(3):379-386,8.

基金项目

东北石油大学国家基金培育基金(2022GPL-11) (2022GPL-11)

大庆市科技指导项目(zd-2023-33) (zd-2023-33)

黑龙江省自然科学基金((LH2021E011)资助项目. ((LH2021E011)

计算力学学报

1007-4708

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