禹雪阳,刘邦瑶,田亚坤,伍玲玲,张志军.离散元对加固尾砂在干湿循环作用下的细观力学分析[J].南华大学学报(自然科学版),2023,(2):1~6, 17.[YU Xueyang,LIU Bangyao,TIAN Yakun,WU Lingling,ZHANG Zhijun.Micromechanical Analysis of Reinforced Tailings by Discrete Element Under Dry Cycle[J].Journal of University of South China(Science and Technology),2023,(2):1~6, 17.]
离散元对加固尾砂在干湿循环作用下的细观力学分析
Micromechanical Analysis of Reinforced Tailings by Discrete Element Under Dry Cycle
投稿时间:2023-01-08  
DOI:10.19431/j.cnki.1673-0062.2023.02.001
中文关键词:  干湿循环  力学性能  PFC  力链  颗粒位移
英文关键词:dry-wet cycle  mechanical properties  PFC  force chain  particle displacement
基金项目:国家自然科学基金资助项目(52274167);湖南省技术攻关“揭榜挂帅”项目(2021SK1050);湖南省自然科学基金资助项目(2022JJ40374;2023JJ30516);湖南省教育厅科研资助项目(20B496;22B0410);衡阳市科技计划经费资助项目(202150063769)
作者单位E-mail
禹雪阳 南华大学 资源环境与安全工程学院,湖南 衡阳 421001 1337661895@qq.com 
刘邦瑶 南华大学 资源环境与安全工程学院,湖南 衡阳 421001  
田亚坤 南华大学 资源环境与安全工程学院,湖南 衡阳 421001
湖南省矿山岩土工程灾害预测与 控制工程技术研究中心,湖南 衡阳 421001 
 
伍玲玲 南华大学 资源环境与安全工程学院,湖南 衡阳 421001
湖南省矿山岩土工程灾害预测与 控制工程技术研究中心,湖南 衡阳 421001 
 
张志军 南华大学 资源环境与安全工程学院,湖南 衡阳 421001
湖南省矿山岩土工程灾害预测与 控制工程技术研究中心,湖南 衡阳 421001 
 
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中文摘要:
      为探究加固尾砂在干湿循环作用影响下力学性能、力链和尾砂颗粒运动的变化,通过对加固尾砂进行三轴试验和离散元颗粒流(PFC2D)模拟试验,分析其力学性能变化趋势,并且探究尾砂颗粒间受力传力和颗粒运动的演变。试验结果表明:加固尾砂峰值应力随着干湿循环次数增加而逐渐递减,但是其峰值应力相较于原状尾砂至少提升2.13倍;在干湿循环作用下,加固尾砂内部力链逐渐加粗,网状粗力链区域增多,且网状粗力链区域发生位置变化;试样破坏碎片数量随循环次数增加而增加,碎片集中区随着循环进行,从试样下部向上部移动;干湿循环造成尾砂颗粒位移情况发生改变,颗粒不同位移区域增加,并在试样上端产生大量不同位移区域,造成试样上端更容易被破坏。
英文摘要:
      In order to explore the changes of mechanical properties, force chain and particle movement of reinforced tailings under the influence of dry-wet cycle, the triaxial test and particle flow code(PFC2D) simulation test of reinforced tailings were carried out to analyze the change trend of mechanical properties, and to explore the evolution of force transmission and particle movement between tailings particles. The test results show that the peak stress of the reinforced tailings gradually decreases with the increase of the number of dry-wet cycles, but its peak stress is at least 2.13 times higher than that of the undisturbed tailings. Under the action of dry-wet cycle, the internal force chain of reinforced tailings gradually becomes thicker, the area of meshed coarse force chain increases, and the position of meshed coarse force chain changes. The number of broken fragments of the sample increases with the increase of the number of cycles, and the fragment concentration area moves from the lower part of the sample to the upper part with the cycle. The dry-wet cycle causes the displacement of the tailings particles to change, and the different displacement regions of the particles increase, and a large number of different displacement regions are generated at the upper end of the sample, which makes the upper end of the sample more easily destroyed.
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