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1.
断层作用下深部开采诱发冲击地压相似试验研究   总被引:1,自引:0,他引:1  
以典型断层型冲击地压矿井为例,采用相似材料模拟试验方法,基于覆岩空间结构失稳与断层活化耦合致灾原理,分析了巨型逆冲断层下盘煤层开采采场覆岩运动过程、工作面倾向支承压力及断层面的应力变化规律,研究了巨型逆冲断层影响下巨厚坚硬顶板易冲击煤层冲击地压显现特征。试验结果表明:煤层开采诱发巨型逆冲断层冲击灾变过程分为3阶段:第1阶段,受煤层采动影响,上覆岩层发生空间运动,煤体中形成明显高应力集中区;第2阶段,覆岩多层空间结构演化诱发断层活化,断层活化导致空间结构外部岩体回转,给空间结构施加外部载荷,造成空间结构失稳加剧,煤岩体的应力激增,影响范围扩大;第3阶段,断层滑移释放能量,提供动载荷。根据应力监测数据变化规律,划分了逆冲断层的明显影响区域,研究结果为断层影响下煤层开采的防冲策略与设计提供可靠依据。  相似文献   

2.
侧向支承压力分布、资源回收率以及煤柱和巷道的稳定性是大采高综放面区段煤柱宽度留设要兼顾的因素,为了确定大采高综放面区段煤柱宽度,以某矿8103面为工程背景,首先,采用理论计算和现场应力监测等方法确定大采高综放工作面倾向支承压力分布规律,得出应力降低区宽度约为8 m,原岩应力区为巷帮侧28 m外。其次,采用工程类比方法确定大采高综放工作面巷帮外侧煤体严重破裂区宽度约为4 m。最后,采用FLAC3D数值软件分析了下区段工作面回采时窄煤柱(6、8 m)和宽煤柱(28、30 m)的应力场、位移场及塑性区特征,获得不同煤柱宽度时巷道和煤柱力学特征。研究表明:当煤柱宽度6 m和8 m时,在采动支承压力下煤柱几乎无承载能力,且巷道变形量较大;当煤柱宽度28 m和30 m时,在采动支承压力下煤柱中央仍有一定的弹性核,煤柱保持稳定且巷道变形量较小。综合考虑资源回收、巷道稳定性、次生灾害控制等因素,确定大采高综放工作面区段煤柱宽度为28 m。  相似文献   

3.
防水煤柱合理留设是巨厚松散层下煤炭开采设计的基本参数。通过对东欢坨矿第四系巨厚松散层地质特征分析,揭示了本区第四系巨厚松散层中的含、隔水层厚度及其结构分布特征和对煤炭开采充水的影响,建立了巨厚松散含水层下防水安全煤柱计算模型和理论,提出了在巨厚松散层下的防水煤柱留设的非线性计算方法,计算东欢坨矿8煤层防水煤岩柱的高度为65.62 m。根据流-固耦合理论,应用FLAC3D数值模拟计算软件,模拟了东欢坨矿 8煤层开采过程中上覆岩层变形破坏规律,揭示了煤层顶板岩体冒落带、导水裂隙带和弯曲下沉带的分布规律,获得了防水煤柱高度及相关工程技术参数,验证了巨厚松散层下防水煤柱留设的非线性设计方法和计算模型的可靠性,为巨厚松散层下防水煤柱合理留设探索了可行途径。   相似文献   

4.
《岩土力学》2017,(4):1148-1153
留设合理宽度的区段煤柱是确保特厚煤层综放工作面顺利接续和安全回采的关键。为确保芦子沟煤矿3107特厚煤层综放工作面仰斜开采过程中,双侧采空煤柱能够稳定承载并有效隔水,分析区段煤柱覆岩结构特征,建立区段煤柱应力计算模型,理论计算了双侧采空煤柱应力,结合数值模拟及理论分析手段对煤柱稳定性进行综合评价。通过实施科学合理的深孔爆破切缝卸压方案,降低了3107工作面采动应力对煤柱的影响,优化了煤柱应力环境,提高了煤柱稳定性,保证了3107工作面的安全回采。研究结果对类似开采条件下的区段煤柱宽度确定及坚硬顶板条件下煤柱卸压具有一定意义。  相似文献   

5.
针对深部开采条件下覆岩移动变形引起的安全问题,采用理论分析、相似材料模拟试验结合的方法,通过监测相似材料模拟深部煤炭开采过程中覆岩位移、应力变化情况及覆岩的断裂破坏、弯曲和移动变形的过程,对比分析了采场覆岩体的移动变形、应力场演化过程和采动应力的影响区域.试验结果表明:在深部倾斜煤层开采过程中,沿着采煤工作面形成了应力升高区、应力降低区和原岩应力区;对孤岛工作面进行开采时,新旧采空区容易因上覆岩层的垮落塌陷连通成整体,极易发生矿井动力灾害;布置孤岛工作面的巷道位置时建议考虑布置在采空区的应力降低区内,并且煤柱宽度不应大于10 ~ 12m,最佳选择为6~8m.  相似文献   

6.
《岩土力学》2017,(12):3419-3426
为建立加载速率影响下煤体不同失稳形式的声发射-电荷判据,以阜新五龙矿某工作面为研究对象,采用物理试验研究方法,开展了不同加载速率下煤体破裂过程声-电荷监测试验,深入研究了加载速率影响的煤体力学性质、破裂规律和煤体破裂过程能量耗散与声发射-电荷信号的对应关系。研究结果表明:加载速率越高,应力调整越提前,煤样单轴抗压强度增加,累积变形能耗散加剧,煤体失稳形式由静载失稳过渡到类动载扰动失稳,煤体失稳破坏的动力特征明显,压缩型冲击地压动力灾害发生几率增大;不同加载速率下煤岩破裂过程产生的声-电荷信号变化与煤岩受载的应力突变具有较好的一致性;对所用煤样的声发射-电荷信号进行量化分析,初步提出了判定煤体失稳形式的声-电荷复合判定依据,在不同矿区、不同工作面上,可依据监测获得的声-电荷现场数据辅以采动应力场的变化情况,对采动过速诱发的煤体压缩型冲击地压的发生几率进行预测和预警。  相似文献   

7.
浅埋采空区下远距离煤层开采覆岩破坏直接影响本煤层工作面安全开采和上覆采空区稳定性。针对神东矿区大柳塔煤矿开采实际,采用相似模拟试验、数值计算和现场实测方法研究了2-2煤采空区下伏的5-2煤层开采覆岩运动及裂隙发育规律。研究结果表明,大柳塔煤矿5-2煤层一次采全高开采,覆岩裂隙带贯穿层间岩层导通2-2煤采空区,层间岩层的破断会诱发上覆岩层大面积垮落,工作面出现强烈的矿压显现,同时加剧了上覆采空区围岩结构失稳及地表沉陷。现场实测也表明大柳塔煤矿5-2煤层大采高开采覆岩破坏高度137. 32 m,裂采比20. 2,与模拟结果一致。这些成果可以为大柳塔矿5-2煤层工作面安全开采提供理论依据。  相似文献   

8.
条带煤柱长期承受覆岩载荷,同时受采空区积水、邻近采动等因素的影响,发生失稳的可能性大大增加。条带煤柱失稳导致覆岩与地表再次运动,成为地表灾害的潜在隐患。为了对条带煤柱覆岩运动演化特征进行深入分析,以典型地区条带开采采空区覆岩运动演化特征为研究对象,运用FLAC3D软件对条采采空区覆岩的应力响应机制及移动变形规律进行了分析研究。研究结果表明:条带煤柱失稳后,煤柱顶板垂直应力由双峰变为单峰,峰值且相较于失稳前增加;地表沉陷量及水平移动均出现大幅度增加,对地表建构筑物构成极大危害。通过研究条采采空区覆岩应力响应机制及移动变形规律能够对条带开采区域地表下沉进行精准预测,对防治条带开采时煤柱失稳造成灾害提供了理论依据,同时对地表建构筑物的建设及安全防护提供科学指导。  相似文献   

9.
以东北某矿三水平北21层三四区一段开切眼掘进工作面严重冲击地压事故为背景,通过现场调研、理论分析、微震/应力监测等方法对高应力区掘进工作面冲击地压事故发生机制进行研究,结果表明,(1)17层煤柱集中应力和21层煤采空区侧向支承压力形成的高静态应力是主要冲击力源,掘进工作面和相邻17层煤回采工作面形成的扰动应力是主要诱发力源,两者叠加影响导致该冲击地压事故;(2)建立了煤柱下方应力分布估算模型和采空区侧向支承压力估算模型,两者叠加作用下对21层煤的影响范围为132 m,具有冲击危险影响范围为70 m;(3)针对冲击地压事故发生机制制定的掘进工作面恢复生产方案,实现开切眼的安全贯通。研究结果对类似条件下的掘进工作面安全生产和开采设计具有一定的借鉴意义。  相似文献   

10.
随着我国煤炭资源去产能整合煤矿的增多,复采工作面临空窄煤柱采动失稳问题日益凸显,已严重制约矿井安全高效生产。为此,针对辛安煤矿复采1402工作面辅运巷道5号钻场临空窄煤柱稳定性控制的工程难题,运用数值模拟与理论分析相结合的方法,探究5号钻场临空窄煤柱稳定性采掘扰动响应特征,提出5号钻场临空窄煤柱动态注浆加固技术方案并开展现场应用和效果检验。研究结果表明:1402工作面辅运巷道掘进对5号钻场临空窄煤柱稳定性影响较小;在1402工作面回采期间,距5号钻场18~6 m范围,临空窄煤柱集中垂直应力由非对称马鞍形分布逐渐过渡为拱形分布;距5号钻场6 m时,临空窄煤柱承载叠加垂直应力超过煤体强度,塑性区完全贯通,极易破坏失稳;现场采用MP364型注浆材料及专用注浆设备对5号钻场临空窄煤柱前后5 m区域进行加固,动态注浆始终超前工作面10 m,通过深孔窥视和气体监测手段验证临空窄煤柱良好的封堵固化效果,保障了工作面安全回采,为我国整合矿井类似条件下煤柱稳定性控制提供借鉴和参考。移动阅读   相似文献   

11.
庞龙龙  徐学锋  司亮  张浩  李正可 《岩土力学》2016,37(Z2):120-128
为研究开采上保护层对巨厚砾岩断裂诱发冲击的防治作用,根据跃进煤矿25采区的地质条件和采掘条件,将25110工作面下巷作为研究对象,从理论上分析了动静载叠加诱发冲击矿压的机制以及开采上保护层后的防冲原理,数值模拟研究了未开采上保护时和开采上保护层后在同等强度的动载扰动应力的影响下巷道底板的位移、速度、应力以及塑性区的变化规律,进行相似模拟试验研究了人工震源的作用下未开采上保护时和开采上保护层后巷道底板的加速度和动应力响应规律。结果表明,上保护层开采后能够有效地释放围岩内部的高应力,且采空区顶板自然垮落,形成的软弱松散岩层结构,能够更好地起到对动载扰动应力波的衰减作用,从而降低了冲击矿压发生的可能,一定程度上能够较好地防治冲击矿压。研究成果对巨厚砾岩下冲击矿压的防治具有一定指导意义。  相似文献   

12.
狭窄煤柱冲击地压的折迭突变模型   总被引:13,自引:5,他引:8  
潘岳  王志强 《岩土力学》2004,25(1):23-30
对简化的狭窄煤柱岩爆分析模型,通过功、能增量平衡关系的途径,导出狭窄煤柱岩爆的突变模式属折迭突变模型。该突变模型的平衡方程和平衡路径所展示的全部性态, 可对煤柱以岩爆形式破坏和渐进形式破坏过程中,包括系统稳定性在内的所有行为,作一一相对应的描述。并首次给出的岩梁弹性能变化(释放)率曲线包含了丰富的信息量,对理解岩梁-煤柱系统在各阶段的行为规律有着重要的作用。所给出的能量输入率 ,是系统失稳临界条件的提法和表达式中蕴涵了Cook刚度判据,故看作是Cook判据能量形式的动态推广。利用能量输入率可将极限状态下岩煤系统稳定性的定性认识提高到用定量形式描述,为岩煤系统稳定性的表述赋予新的形式。  相似文献   

13.
Prediction of global stability in room and pillar coal mines   总被引:1,自引:0,他引:1  
Global stability is a necessary prerequisite for safe retreat mining and one of the crucial and complex problems in room and pillar mining, so its prediction plays an important role in the safety of retreat mining and the reduction of pillar failure risk. In this study, we have tried to develop predictive models for anticipating global stability. For this purpose, two of the most popular techniques, logistic regression analysis and fuzzy logic, were taken into account and a predictive model was constructed based on each. For training and testing of these models, a database including 80 retreat mining case histories from 18 room and pillar coal mines, located in West Virginia State, USA, was used. The models predict global stability based on the major contributing parameters of pillar stability. It was found that both models can be used to predict the global stability, but the comparison of two models, in terms of statistical performance indices, shows that the fuzzy logic model provides better results than the logistic regression. These models can be applied to identify the susceptibility of pillar failure in panels of coal mines, and this may help to reduce the casualties resulting from pillar instability. Finally, the sensitivity analysis was performed on database to determine the most important parameters on global stability. The results revealed that the pillar width is the most important parameter, whereas the depth of cover is the least important one.  相似文献   

14.
弹性地基条件下狭窄煤柱岩爆的突变理论分析   总被引:1,自引:0,他引:1  
张勇  潘岳 《岩土力学》2007,28(7):1469-1476
将未采煤层视为弹性地基条件下,运用maple9.5符号运算软件解得岩梁的挠曲线方程。根据能量守恒原理得到的功、能增量平衡关系式,求得岩梁–煤柱系统作准静态形变时的平衡方程--折迭突变模型平衡方程;用折迭突变总势能函数所作的稳定性判别表明,岩爆前兆阶段岩梁–煤柱系统处于不稳定平衡状态;煤柱岩爆的条件是Cook刚度准则,该准则可以动态地用煤柱形变增大时所需外界的能量输入率趋于0来表示;计算了煤柱岩爆地震能释放量,阐明煤柱岩爆机制是由于岩梁弹性能释放量超过峰后软化煤柱形变所耗的能量。通过岩梁弹性势能变化率曲线和煤柱耗能曲线,以几何形式描述了所得研究结果。计算表明,未开采煤层刚度变化对岩梁的等效刚度影响微弱。工作面开挖和采空区增大,将显著减小岩梁刚度Ke,对煤柱岩爆有重要影响。  相似文献   

15.
Driving roadway along a goaf is commonly adopted for mining face of thick seam in a deep mine. Determining a reasonable width of coal pillar is a key scientific problem for driving roadway along a goaf in a deep mine. The paper took a roadway driven along a goaf at Zhaolou coal mine which is a typical kilometer-deep mine in China as engineering background. Field monitoring, model test, and numerical experiment are conducted. Stress and displacement evolution mechanism are analyzed with different pillar widths. The test results show that with the increase of coal pillar width, the peak stress value at the coal pillar working slope and integrated coal beside the roadway increases firstly and then tends to be stable, its position is transferred to the side of the roadway, and the deformation of coal pillar decreases gradually during roadway excavation. The coal pillar deformation and roadway vertical displacement increased as the coal pillar width increases under high abutment pressure. In order to reduce the waste of non-renewable resources and meet the requirements of bearing capacity and stability of coal pillars, a method is proposed for setting a reasonable width of coal pillars and the specific width of coal pillars is designed and applied in engineering practices based on the above research. All the tests are significant in the study of driving roadway along a goaf in a deep mine.  相似文献   

16.
特厚煤层小煤柱沿空掘巷数值分析及应用   总被引:1,自引:0,他引:1  
彭林军  张东峰  郭志飚  段庆伟 《岩土力学》2013,34(12):3609-3616
沿空掘巷开采技术成功的关键主要取决于采场覆岩稳定的时间和沿空掘巷的位置。采场采动岩体运动导致围岩应力重新分布,动态采场应力作用于围岩并使其状态发生灾变是发生矿山灾害的根本原因。特厚煤层分层综采巷道布置(包括内错、外错和垂直),合理确定煤柱尺寸、巷道支护方式和参数选择能够最大可能发挥围岩的自承能力,是提高巷道稳定的重要保证。在稳定的内应力场范围内布置小煤柱护巷,能够明显提高巷道围岩稳定状态,减少巷道维护费用。通过理论分析、数值模拟和现场实测等方法,对特厚煤层下分层沿空掘巷小煤柱不同巷道布置设计,通过煤柱的应力、应变和位移进行对比分析,确定特厚煤层下分层沿空掘巷合理的巷道位置和煤柱尺寸及上覆岩层防控技术,并得到工程验证是正确可靠的,从而为特厚煤层小煤柱开采技术提供了重要的科学依据。  相似文献   

17.
Some villages and bridges are located on the ground surface of the working district no. 7 in the Wanglou Coal Mine. If longwall mining is adopted, the maximum deformation of the ground surface will exceed the safety value. Strip mining is employed for the working district no. 7 which is widely used to reduce surface subsidence and the consequent damage of buildings on the ground surface. To ensure the safety of coal pillars and improve the recovery coefficient, theoretical analysis and numerical simulation (FLAC 3D) were adopted to determine the coal pillar and mining widths and to discuss the coal pillar stress distribution and surface subsidence for different mining scenarios. The results revealed that the width of coal pillars should be larger than 162 m, and the optimized mining width varies from 150 to 260 m. As the coal seam is exploited, vertical stress is mainly applied on the coal pillar, inducing stress changes on its ribs. The coefficient of mining-induced stress varies from 2.02 to 2.62 for different mining scenarios. The maximum surface subsidence and horizontal movement increase as the mining width increases. However, when the mining width increases to a certain value, increasing the pillar width cannot significantly decrease the maximum subsidence. To ensure the surface subsidence less than 500 mm, the mining width should not be larger than 200 m. Considering the recovery coefficient and safety of the coal pillar, a pillar width of 165 m is suggested.  相似文献   

18.
急倾斜煤柱开采后对巷道影响的数值模拟   总被引:4,自引:0,他引:4  
为提高煤炭的回收率和经济效益,针对长沟峪煤矿4槽煤柱,应用ANSYS有限元软件对-230~-310水平的煤柱开采前后进行数值模拟,得出:(1)煤柱开采以后,煤岩体总体下沉,但对-140水平巷道影响较小。(2)开采后,煤柱的中间部位是转折区,煤柱中部以上主应力减小,属于安全区域;煤柱中部以下主应力增大,随深度的增加,主应力增大;-320水平附近煤柱采后的主应力是采前的2倍多,是煤柱开采后主应力最大的地方,所以开采此区域为相对重点注意区域。(3)煤柱开采后-140水平的煤柱附近主应力增大,是没开采前的1.6倍,也是煤柱开采后主应力较大的地方,开采前要适当对-140水平煤柱附近进行加固。数值模拟得出结果和实际开采吻合较好,因此急倾斜煤柱开采后对巷道影响的数值模拟对开采有一定的指导意义。  相似文献   

19.
Solid backfill coal mining is a mainstream method in green coal mining, which has gradually become a key technology to control shaft deformation when recovering industrial square pillars during mining of ultra-contiguous coal seams. On the basis of the engineering background of Nantun Coal Mine, this paper combined physical simulation, numerical simulation, and theoretical analysis for studying shaft deformation, failure characteristics, and stress variation rules during the mining of ultra-contiguous coal seams. The results revealed that shaft deformation and failure were the results of the movement of strata caused by coal mining; in addition, the backfill body compression ratios in two adjacent coal seams were the key factors in shaft deformation control during the mining of ultra-contiguous coal seams. Moreover, the effects of the backfill body compression ratios on shaft deformation in ultra-contiguous coal seam mining were simulated by ABAQUS, and the optimal compression ratios of backfill body in two coal seams were determined. Finally, based on the probability-integral method, the vertical compressive deformation and the inclined deformation of shaft were estimated and the results showed that the shaft safety and stability at ultra-contiguous coal seam mining can be provided when the backfill body compression ratios of 3upper and 3lower coal seams were set at 85%.  相似文献   

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