|本期目录/Table of Contents|

[1]蒙文富,代张音,陈有成,等.软硬互层型平缓反倾岩质斜坡采动变形破坏机理研究*[J].中国安全生产科学技术,2024,20(3):103-109.[doi:10.11731/j.issn.1673-193x.2024.03.015]
 MENG Wenfu,DAI Zhangyin,CHEN Youcheng,et al.Study on mining-induced deformation and failure mechanism of soft and hard interbedded gentle counter-inclined rocky slopes[J].JOURNAL OF SAFETY SCIENCE AND TECHNOLOGY,2024,20(3):103-109.[doi:10.11731/j.issn.1673-193x.2024.03.015]
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软硬互层型平缓反倾岩质斜坡采动变形破坏机理研究*
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《中国安全生产科学技术》[ISSN:1673-193X/CN:11-5335/TB]

卷:
20
期数:
2024年3期
页码:
103-109
栏目:
职业安全卫生管理与技术
出版日期:
2024-03-31

文章信息/Info

Title:
Study on mining-induced deformation and failure mechanism of soft and hard interbedded gentle counter-inclined rocky slopes
文章编号:
1673-193X(2024)-03-0103-07
作者:
蒙文富代张音陈有成夏婷
(贵州大学 矿业学院,贵州 贵阳 550025)
Author(s):
MENG Wenfu DAI Zhangyin CHEN Youcheng XIA Ting
(Mining College,Guizhou University,Guiyang Guizhou 550025,China)
关键词:
采动裂隙变形特征软硬互层平缓反倾离散元
Keywords:
mining-induced fissure deformation characteristics soft and hard interbedding gentle counter-inclined discrete element
分类号:
X936;TD325
DOI:
10.11731/j.issn.1673-193x.2024.03.015
文献标志码:
A
摘要:
为研究我国西南矿区软硬互层型平缓反倾岩质斜坡采动变形破坏机理,以我国贵州省都匀市某煤洞坡为例,采用数值模拟方法,分析采动诱发软硬互层型平缓反倾岩质斜坡的变形破坏特征,讨论采动对坡体的作用规律,研究单工况采动和留煤柱下重复采动对坡体的变形破坏机理。研究结果表明:靠近坡表工作面开采和留煤柱下重复采动对坡体的稳定性影响较大;采动裂隙首先集中于采空区两侧并向上发展,软硬夹层间产生离层裂隙的可能性一般较大;留煤柱可防止坡体沉陷破碎,但也可能加剧坡体稳定性下降。研究结果可为软硬互层型平缓反倾岩质斜坡地下开采时,有效预防诱发山体失稳等地质灾害提供理论参考。
Abstract:
In order to study the mining-induced deformation and failure mechanism of soft and hard interbedded gentle counter-inclined rocky slopes in southwestern mining area of China,taking Duyun coal cave slope of Guizhou province as an example,the numerical simulation was used to analyze the deformation and failure characteristics of soft and hard interbedded gentle counter-inclined rocky slopes induced by mining.The action law of mining on the slopes was discussed,and the deformation and failure mechanism of the slopes by single-condition mining and repetitive mining under the retained coal pillar was studied.The results show that the mining close to the slope surface working face and the repetitive mining under the retained coal pillar have the greater influence on the stability of slope body.The mining-induced fissures are first concentrated on both sides of goaf and develop upward,and the separation fissures between soft and hard interlayers are generally likely to occur.The retained coal pillar can prevent the slope subsidence and fragmentation,but it may also aggravate the decline of slope stability.The research results can provide a theoretical reference for the geological disasters of mountain instability induced by underground mining of soft and hard interbedded gentle counter-inclined rocky slopes.

参考文献/References:

[1]黄庆享,夏小刚.采动岩层与地表移动的“四带”划分研究[J].采矿与安全工程学报,2016,33(3):393-397.HUANG Qingxiang,XIA Xiaogang.Division of “four zones” in mining strata and surface movement[J].Journal of Mining & Safety Engineering,2016,33(3):393-397.
[2]陈仕阔,杨天鸿,张华兴.平朔安家岭露天矿地下采动条件下的边坡稳定性[J].煤炭学报,2008,33(2):148-152.CHEN Shikuo,YANG Tianhong,ZHANG Huaxing.The slope stability under underground mining of Anjialing open-pitmine in Pingshou[J].Journal of China Coal Society,2008,33(2):148-152.
[3]HU H F,LIAN X G.Subsidence rules of underground coal mines for different soil layer thickness:Lu’an coal base as an example,China[J].International Journal of Coal Science & Technology,2015,2(3):178-185.
[4]HEJMANOWSKI R.Modeling of time dependent subsidence for coal and ore deposits[J].International Journal of Coal Science & Technology,2015,4(2):287-292.
[5]赵建军,王子贤,严浩元,等.缓倾层状结构高陡采动斜坡变形特征研究[J].水文地质工程地质,2022,49(2):174-183.ZHAO Jianjun,WANG Zixian,YAN Haoyuan,et al.Deformation characteristics of a high and steep mining slope with gently-inclined layered structur[J].Hydrogeology & Engineering Geology,2022,49(2):174-183.
[6]MALINOWSKA A A,MISA R,TAJDUS K.Geomechanical modeling of subsidence related strains causing earth fissures[J].Acta Geodynamica et Geomaterialia,2018,15(2):197-204.
[7]SALMI E F,NAZEM M,KARAKUS M.Numerical analysis of a large landslide induced by coal mining subsidence[J].Engineering Geology,2017,217:141-152.
[8]REGASSA B,XU N X,MEI G.An equivalent discontinuous modeling method of jointed rock masses for DEM simulation of mining-induced rock movements[J].International Journal of Rock Mechanics and Mining Sciences,2018,108:1-14.
[9]赵建军,肖建国,向喜琼,等.缓倾煤层采空区滑坡形成机制数值模拟研究[J].煤炭学报,2014,39(3):424-429.ZHAO Jianjun,XIAO Jianguo,XIANG Xiqiong,et al.Failure mechanism numerical simulation of mining landslide with gentle bedding coal strata[J].Journal of China Coal Society,2014,39(3):424-429.
[10]肖建国.缓倾采空区斜坡变形破坏及运动特征研究[D].成都:成都理工大学,2014.
[11]代张音,郑禄林,王育林,等.重复采动顺层岩质斜坡变形破坏动态演化规律研究[J].安全与环境学报,2023,23(6):1807-1816.DAI Zhangyin,ZHENG Lulin,WANG Yulin,et al.Dynamic evolution law of deformation and failure of the bedding rock slope induced by the underground repeated mining activities[J].Journal of Safety and Environment,2023,23(6):1807-1816.
[12]代张音,刘庆,王育林,等.基于离散元法的采动顺层岩质斜坡变形破坏响应特征研究[J].安全与环境学报,2021,21(3):1089-1098.DAI Zhangyin,LIU Qing,WANG Yulin,et al.Deformation and failure response ofthe bedding rock slope induced by the underground mining activities basedon the distinctive element method[J].Journal of Safety and Environment,2021,21(3):1089-1098.
[13]兰志勇.采动滑坡变形破坏机制物理模拟试验研究[D].成都:成都理工大学,2015.
[14]王玉川.缓倾煤层采空区上覆山体变形破坏机制及稳定性研究[D].成都:成都理工大学,2013.
[15]赵建军,马运韬,蔺冰,等.平缓反倾采动滑坡形成的地质力学模式研究——以贵州省马达岭滑坡为例[J].岩石力学与工程学报,2016,35(11):2217-2224.ZHAO Jianjun,MA Yuntao,LIN Bing,et al.Geomechanical mode of mining landslides with gently counter-inclined bedding—a case study of Madaling landslide in Guizhou province[J].Chinese Journal of Rock Mechanics and Engineering,2016,35(11):2217-2224.

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备注/Memo

备注/Memo:
收稿日期: 2023-11-23
* 基金项目: 国家自然科学基金项目(52264005)
作者简介: 蒙文富,硕士研究生,主要研究方向为矿山灾害防治。
通信作者: 代张音,博士,副教授,主要研究方向为矿山灾害预测理论与控制、安全科学与技术。
更新日期/Last Update: 2024-04-07