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金属矿山 ›› 2022, Vol. 51 ›› Issue (01): 221-230.

• 安全与环保 • 上一篇    下一篇

基于DIC的含水尾砂堆积坝振动破坏研究

刘美辰1,2赵怡晴1,2金爱兵1,2田欣然1,2刘先苇1,2   

  1. 1.北京科技大学土木与资源工程学院,北京 100083;2.金属矿山高效开采与安全教育部重点实验室,北京 100083
  • 出版日期:2022-01-15 发布日期:2022-02-14
  • 基金资助:
    国家自然科学基金项目(编号:51804018);北京科技大学本科生科技创新项目(编号:202027015)

Vibration Damage Characteristics of Waterbearing Tailings Accumulation Dams Based on the DIC Technology

LIU Meichen1,2ZHAO Yiqing1,2JIN Aibing1,2TIAN Xinran1,2LIU Xianwei1,2   

  1. 1.School of Civil and Resource Engineering,University of Science and Technology Beijing,Beijing 100083,China;2.Key Laboratory of Ministry of Education for Efficient Mining and Safety of Metal Mines,Beijing 100083,China
  • Online:2022-01-15 Published:2022-02-14

摘要: 为探讨含水率对尾砂堆积坝振动破坏的影响,在室内直剪试验的基础上开展堆积坝模型振动台试验,结合数字图像相关技术(Digital Image Correlation Technology,DIC)研究了含水尾砂堆积坝的振动破坏规律、局部变形及损伤演化特征。试验结果表明:尾砂的黏聚力随含水率增大呈现先增大后减小趋势,并得到cω拟合公式,而内摩擦角变化较小,在30.03°~33.44°范围内波动;黏聚力对尾砂堆积坝稳定性和起裂时刻具有重要影响;坝体含水率对堆积坝破裂形态及破坏模式影响显著,高含水率16.0%坝体呈“局部单一式”拉伸破坏,低含水率5.6%坝体发生“交错溃散式”张拉—剪切复合型破坏,随着含水率增加,尾砂堆积坝振动破坏模式由拉剪破坏向张拉破坏主导过渡;基于局部应变场统计分析提出损伤因子定量表征坝面损伤,含水5.6%坝面损伤因子呈突发式增长趋势,呈现为脆性破坏,含水13.0%与16.0%堆积坝后期损伤因子增长缓慢,向延性破坏过渡。

关键词: 尾砂堆积坝, 含水率, 振动台试验, 数字图像相关技术, 破坏模式, 损伤演化

Abstract: In order to analyze the effect of water content on the vibration damage of the tailings accumulation dams,shaking table tests were conducted for different watercontent accumulation dam models on the basis of a series of indoor direct shear tests,and the digital image correlation (DIC) technology was used to analyze their vibration damage patterns,local deformation and damage evolution characteristics.The test results show that the cohesion of tailings shows a trend of increasing and thereafter decreasing as the moisture content increases,which gives a cω fitting formula,but the internal friction angle of tailings does not change much with moisture content,displaying a fluctuation in the range of 30.03°~33.44°.What′s more,the cohesion plays a pivotal role on the stability and cracking moment of the tailings dam.The water content exerts a critical effect on the rupture mode and a damage pattern of the accumulation dam,which shows "local single type" tensile damage at a highwater content of 16.0% and "staggered collapse type" tensileshear compound damage at a low water content of 5.6%.With the increase of water content,the vibration damage mode of the tailings accumulation dam transitions from tensile shear damage to tension damage dominated.Based on the statistical analysis of the local strain field,the damage factor is proposed.The damage factor of 5.6% waterbearing dam shows that a sudden up trend increases,and brittle damage appears,while 13.0% and 16.0% waterbearing dams show ductile damage in the later stages.