文章摘要
魏永新, 庹晓军, 曹瑞琅, 何瑞良, 赵宇飞, 张 强.振冲碎石桩成桩过程模拟和桩径预测研究Journal of Water Resources and Water Engineering[J].,2023,34(1):176-180
振冲碎石桩成桩过程模拟和桩径预测研究
Forming process simulation and diameter prediction of vibroflotation gravel piles
  
DOI:10.11705/j.issn.1672-643X.2023.01.21
中文关键词: 振冲碎石桩  成桩过程  桩径  离散单元法  地基处理
英文关键词: vibroflotation gravel pile  pile forming process  pile diameter  discrete element method  foundation treatment
基金项目:国家自然科学基金项目(52079150)
Author NameAffiliation
WEI Yongxin1, TUO Xiaojun1, CAO Ruilang2, HE Ruiliang1, ZHAO Yufei2, ZHANG Qiang2 (1.华电金沙江上游水电开发有限公司四川 成都 610041 2.中国水利水电科学研究院流域水循环模拟与调控国家重点实验室北京 100048) 
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中文摘要:
      振冲碎石桩是应对软弱地层的复合地基处理手段,施工质量至关重要,碎石桩径是成桩过程控制的核心指标。在碎石桩和土体宏观和细观参数标定基础上,梳理振冲碎石桩成桩工艺,基于离散单元法开展了振冲碎石桩成孔清孔、填料、振冲挤密等主要成桩过程模拟,并进行桩径预测研究。结果表明:颗粒流离散元能够较好地模拟振冲过程中碎石和土体的相互流动,模型反映出了碎石向土体的过渡界面;留振过程中,碎石和加密段周围土体孔隙率逐渐减小,表明振冲碎石桩对桩周土体有明显的挤密作用;离散单元法能够模拟出碎石与土体的相互作用,绘制的桩径和桩形表现出波动性,与常规公式计算方法相比更接近工程实际。
英文摘要:
      As an economic and practical foundation treatment method, vibroflotation gravel piles are specially designed for weak strata, the quality control of which are of great significance, and the diameter of the gravel pile is one of the core elements of the control of pile forming process.Based on the calibration of macroscopic and mesoscopic parameters of the gravel pile and soil, the pile forming process of the vibroflotation gravel pile is analyzed and the main pile forming processes, such as hole forming and cleaning, filling and vibroflotation compaction are simulated using the discrete element method. In the meantime, the pile diameter prediction is carried out. The results show that the particle flow discrete element can simulate the flow between the gravel and soil in the process of vibroflotation, and the model reflects the actual transition interface between gravel and soil; in the process of retaining vibration, the porosity of the soil around the gravel and densified section decreases gradually, indicating that the vibroflotation gravel pile has an obvious compaction effect on the soil around the pile; because the discrete element method can simulate the interaction between the gravel and soil, the calculated fluctuation of pile diameter and pile shape is more reasonable than that of the calculation method of conventional formulas.
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