期刊文献+
共找到21篇文章
< 1 2 >
每页显示 20 50 100
Fracture evolution and pressure relief gas drainage from distant protected coal seams under an extremely thick key stratum 被引量:53
1
作者 WANG Liang CHENG Yuan-ping +2 位作者 LI Feng-rong WANG Hai-feng LIU Hai-bo 《Journal of China University of Mining and Technology》 EI 2008年第2期182-186,共5页
When an extremely thick rock bed exists above a protected coal seam in the bending zone given the condition of a mining protective seam, this extremely thick rock bed controls the movement of the entire overlying stra... When an extremely thick rock bed exists above a protected coal seam in the bending zone given the condition of a mining protective seam, this extremely thick rock bed controls the movement of the entire overlying stratum. This extremely thick rock bed, called a "main key stratum", will not subside nor break for a long time, causing lower fractures and bed separations not to close and gas can migrate to the bed separation areas along the fractures. These bed separations become gas enrichment areas. By analyzing the rule of fracture evolution and gas migration under the main key stratum after the deep protective coal seam has been mined, we propose a new gas drainage method which uses bore holes, drilled through rock and coal seams at great depths for draining pressure relief gas. In this method, the bores are located at a high level suction roadway (we can also drill them in the drilling field located high in an air gateway). Given the practice in the Haizi mine, the gas drainage rate can reach 73% in the middie coal group, with a gas drainage radius over 100 m. 展开更多
关键词 extremely thick key stratum protective seam exploitation fracture evolution gas drainage distant borehole drilling
下载PDF
Using of Key Stratum Theory to Study the Structural Development of Roof Aquifer 被引量:2
2
作者 CHEN Li ZHANG Fawang +4 位作者 YAO Hongchao HAN Zhantao QIAN Long CHEN Liang JIANG Chengchao 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2015年第6期2091-2091,共1页
During the underground mining of coal resources,overlying rocks on the roof of excavated tunnels will be destroyed due to ground pressure,and as a result,part of them will break and fall into the tunnels.How to determ... During the underground mining of coal resources,overlying rocks on the roof of excavated tunnels will be destroyed due to ground pressure,and as a result,part of them will break and fall into the tunnels.How to determine the distribution of fractured areas and fissures presents a major problem for preserving the overlying aquifer. 展开更多
关键词 In Using of key stratum Theory to Study the Structural Development of Roof Aquifer
下载PDF
A method for predicting the water-flowing fractured zone height based on an improved key stratum theory 被引量:1
3
作者 Jianghui He Wenping Li +3 位作者 Kaifang Fan Wei Qiao Qiqing Wang Liangning Li 《International Journal of Mining Science and Technology》 SCIE EI CAS CSCD 2023年第1期61-71,共11页
In the process of using the original key stratum theory to predict the height of a water-flowing fractured zone(WFZ),the influence of rock strata outside the calculation range on the rock strata within the calculation... In the process of using the original key stratum theory to predict the height of a water-flowing fractured zone(WFZ),the influence of rock strata outside the calculation range on the rock strata within the calculation range as well as the fact that the shape of the overburden deformation area will change with the excavation length are ignored.In this paper,an improved key stratum theory(IKS theory)was proposed by fixing these two shortcomings.Then,a WFZ height prediction method based on IKS theory was established and applied.First,the range of overburden involved in the analysis was determined according to the tensile stress distribution range above the goaf.Second,the key stratum in the overburden involved in the analysis was identified through IKS theory.Finally,the tendency of the WFZ to develop upward was determined by judging whether or not the identified key stratum will break.The proposed method was applied and verified in a mining case study,and the reasons for the differences in the development patterns between the WFZs in coalfields in Northwest and East China were also fully explained by this method. 展开更多
关键词 Coal mining Water-flowing fractured zone height Prediction method Improved key stratum theory
下载PDF
Measurement and numerical analysis of influence of key stratum breakage on mine pressure in top-coal caving face with super great mining height
4
作者 李猛 张吉雄 +1 位作者 黄艳利 高瑞 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第8期1881-1888,共8页
To analyze the influence of movement in shallow-buried working faces with large mining heights on mine pressure manifestation, the key stratum at a working face was categorised using the 1313 top-coal caving face with... To analyze the influence of movement in shallow-buried working faces with large mining heights on mine pressure manifestation, the key stratum at a working face was categorised using the 1313 top-coal caving face with super great mining height under cover as a case study. The research combined theoretical analysis, field measurement, and numerical simulation to analyze the influencing mechanism of key stratum. Moreover, the research results were verified by numerical simulation and indicate that the sub-key stratum is prone to be broken to form a "cantilever beam" structure rather than a stable hinged structure during the excavation of working faces with super great mining heights. When the "cantilever beam" structure is unstable, a low pressure will occur on the working face, and the overlying strata will subside simultaneously with the sub-key stratum to induce the breakage of the primary key stratum: the breakage will further trigger the periodic breakage of sub-key stratum, causing a greater load on the working face. Finally, steps, and strength of weighting in the working face vary to be great or small alternatively. This is the main reason explaining why the 1313 working face shows strong mine pressure manifestation. The results provide theoretical and practical experience for forecasting and controlling mine pressure manifestation. 展开更多
关键词 super great mining height key stratum cantilever beam mine pressure manifestation under cover
下载PDF
Discrimination conditions and process of water-resistant key strata 被引量:2
5
作者 WANG, Lianguo MIAO, Xiexing +2 位作者 WU, Yu SUN, Jian YANG, Hongbo 《Mining Science and Technology》 EI CAS 2010年第2期224-229,共6页
Water-preservation mining is one of the most important parts of the ‘Green Mining' technology system,which can realize the effective regulation of groundwater resources by controlling strata movement,changing pas... Water-preservation mining is one of the most important parts of the ‘Green Mining' technology system,which can realize the effective regulation of groundwater resources by controlling strata movement,changing passive prevention and governance of water disasters to active conservation and utilization of groundwater resources and thus obtaining coal and water simultaneously in mining.The concept of water-resistant key strata further enriches the content of the key stratum theory and provides a theoretical basis for water-preservation mining.In order to realize the idea of water-resistant key strata as a guideline in the design of water-preservation mining and engineering applications,the conditions for discrimination in the process of water-resistant key strata,we have presented a mechanical model,as well as its corresponding computer program,based on a large number of theoretical analyses and field measurements,as well as on a comprehensive consideration of the position,structural stability and seepage stability of key strata.Practical engineering applications indicate that this discrimination method and its corresponding computer program on water-resistant key strata are accurate and reliable and can satisfy the actual design needs of water-preservation mining and thus have instructional importance for water-preservation mining in mining areas lacking water. 展开更多
关键词 water-resistant key stratum water-preservation mining structural stability seepage stability
下载PDF
浅埋煤层开采压架类型 被引量:102
6
作者 许家林 朱卫兵 鞠金峰 《煤炭学报》 EI CAS CSCD 北大核心 2014年第8期1625-1634,共10页
浅埋煤层长壁开采工作面矿压显现有时很强烈,在支架工作阻力和支护强度很大时仍发生严重的压架事故。据不完全统计,神东矿区自2007年以来先后发生十多起严重的压架事故,造成了巨大的经济损失。压架灾害是目前影响神东矿区浅埋煤层安全... 浅埋煤层长壁开采工作面矿压显现有时很强烈,在支架工作阻力和支护强度很大时仍发生严重的压架事故。据不完全统计,神东矿区自2007年以来先后发生十多起严重的压架事故,造成了巨大的经济损失。压架灾害是目前影响神东矿区浅埋煤层安全高效开采的重要因素之一。为了有效防治压架灾害,通过大量的工程实测,并结合模拟实验和理论分析,对神东矿区浅埋煤层开采压架机理与类型开展了系统深入的研究,结果表明:当浅埋煤层覆岩呈现复合单一关键层结构和上煤层已采单一关键层结构时,在下列4类特定条件下上覆岩层直至地表的荷载易直接作用到该单一关键层结构上,导致关键层结构的滑落失稳,引发工作面压架:1厚风积沙复合单一关键层条件;2过沟谷地形上坡段条件;3采出上覆集中煤柱条件;4上覆房采煤柱下开采条件。揭示了上述4类条件下关键层结构失稳机制与压架机理,并提出了相应的防治对策,指导了神东矿区浅埋煤层开采压架灾害的防治实践。 展开更多
关键词 浅埋煤层 压架灾害 关键层 神东矿区
下载PDF
神东矿区近距离煤层出一侧采空煤柱压架机制 被引量:49
7
作者 鞠金峰 许家林 +1 位作者 朱卫兵 王路军 《岩石力学与工程学报》 EI CAS CSCD 北大核心 2013年第7期1321-1330,共10页
针对神东矿区石圪台煤矿1-2煤一盘区多个工作面在推出上覆1-2上煤一侧采空煤柱过程中发生的压架事故,采用现场实测、理论分析和模拟试验,对压架发生的机制及其防治对策进行研究。结果表明:下煤层切眼布置于上覆煤柱区下方,造成工作面回... 针对神东矿区石圪台煤矿1-2煤一盘区多个工作面在推出上覆1-2上煤一侧采空煤柱过程中发生的压架事故,采用现场实测、理论分析和模拟试验,对压架发生的机制及其防治对策进行研究。结果表明:下煤层切眼布置于上覆煤柱区下方,造成工作面回采期间经历由煤柱区进入采空区下的开采过程,即为出一侧采空煤柱的开采。在此过程中出现的压架存在2种类型,当切眼距煤柱边界较远而大于煤柱上方关键层的初次破断距时,则出煤柱时该关键层将处于周期破断状态,并与煤柱边界采空区一侧已断块体形成非稳定的三铰式结构,该结构的相对回转运动传递的过大载荷是压架发生的根本原因。当切眼距煤柱边界较近而介于煤柱上方关键层的初次破断距和周期破断距之间时,则出煤柱时该关键层将呈现悬臂式破断,由于其破断跨度较大,将造成支架载荷的过大而压架;同时,若此破断跨度超过该关键层1.7~1.9倍的周期破断距时,其压架强度将明显增高。模拟试验和工程实践表明,缩小下煤层切眼距煤柱边界的距离使得煤柱上方关键层不发生破断,可有效防治出一侧采空煤柱开采的压架。 展开更多
关键词 采矿工程 近距离煤层 一侧采空煤柱 压架 关键层
下载PDF
浅埋特大采高综采工作面关键层“悬臂梁”结构运动对端面漏冒的影响 被引量:62
8
作者 鞠金峰 许家林 朱卫兵 《煤炭学报》 EI CAS CSCD 北大核心 2014年第7期1197-1204,共8页
通过对神东矿区大柳塔煤矿52304综采工作面7.0 m支架开采时端面漏冒的现场实测、模拟实验与理论分析,从特大采高综采工作面覆岩关键层"悬臂梁"结构运动对直接顶作用的角度,阐述了端面漏冒的发生机理,并提出了相应的控制对策... 通过对神东矿区大柳塔煤矿52304综采工作面7.0 m支架开采时端面漏冒的现场实测、模拟实验与理论分析,从特大采高综采工作面覆岩关键层"悬臂梁"结构运动对直接顶作用的角度,阐述了端面漏冒的发生机理,并提出了相应的控制对策。结果表明:综采工作面的端面漏冒不仅与顶板岩性、构造和裂隙发育以及支护工况有关,还与关键层破断块体的回转运动密切相关。特大采高综采工作面覆岩第1层关键层易破断进入垮落带而形成"悬臂梁"结构,不同于低采高综采工作面关键层稳定铰接的"砌体梁"结构,由于其破断块体后方无水平的侧向约束力,它将无法形成自稳的承载结构;当支架初撑力不足以平衡该"悬臂梁"破断块体及其上覆垮落带岩层的载荷时,易造成该块体发生失稳错动而切割直接顶,从而导致贯穿式的端面漏冒的发生。这是造成52304特大采高综采工作面在顶板完整、煤壁片帮并不突出的条件下,仍发生严重端面漏冒的主要原因。由此提出了以提高支架初撑力来防止关键层"悬臂梁"破断块体发生失稳错动为思路的端面漏冒控制对策,并依此确定了52304综采工作面7.0 m支架的合理初撑力为12 405 kN,现有支架的初撑力仍显不足。 展开更多
关键词 浅埋煤层 特大采高 端面漏冒 悬臂梁 关键层
下载PDF
关键层运动监测及岩移5阶段规律——以红庆河煤矿为例 被引量:27
9
作者 鞠金峰 许家林 +6 位作者 刘阳军 马祥 王晓振 王业征 刘乐 谢建林 赵富强 《煤炭学报》 EI CAS CSCD 北大核心 2022年第2期611-622,共12页
煤炭开采引起的岩移规律一直是采矿领域难解的“黑箱”问题,研究揭示其内部作用机制与演变过程是科学解决采矿工程系列问题的理论基础。基于岩层控制的关键层理论,采用地面钻孔原位监测方法,开展了红庆河煤矿深井特大采高开采条件下覆... 煤炭开采引起的岩移规律一直是采矿领域难解的“黑箱”问题,研究揭示其内部作用机制与演变过程是科学解决采矿工程系列问题的理论基础。基于岩层控制的关键层理论,采用地面钻孔原位监测方法,开展了红庆河煤矿深井特大采高开采条件下覆岩内部移动规律的实测与反演研究。结果表明,覆岩由下向上逐步运移发展的过程呈现5阶段典型分区特征,分别为覆岩超前受压变形阶段、逐层向上断裂运移阶段、覆岩整体快速沉降阶段、上位岩层向下压实阶段以及覆岩整体稳沉阶段。依据5阶段岩移特征,拟合形成了覆岩超前运移的“类指数”岩移边界线,对应井上下超前影响范围分别为地表的340 m以及煤层的99 m;推演得到了关键层逐层向上断裂发展的83°断裂延伸角,对应320 m埋深以下关键层发生超前断裂、以上为滞后断裂。同时,对覆岩“横三区”的具体分布进行了划分;沿走向推进剖面,“类指数”岩移边界线与关键层断裂线之间的区域为超前变形区(煤壁支撑区),对应于岩移阶段1;关键层断裂线之后、直至井上下分别滞后工作面煤壁410和190 m的区域为离层区,对应于岩移阶段2~4;再后方的采空区为重新压实区,对应于岩移阶段5。覆岩关键层运动表现出对地表沉陷的显著控制作用,随着其逐层向上断裂运移,地表沉陷活跃度不断攀升,在主关键层结束其正向回转并开始反向回转时,地表沉陷开始进入峰值状态,且这种峰值的持续对应于覆岩整体的快速沉降;当上位岩层逐步压实下位岩层时,地表沉陷活跃度开始降低;直至主关键层运移稳定,地表沉陷活跃期结束、开始进入衰退期;表明地表沉陷盆地的最终形态直接受控于主关键层的运移状态。 展开更多
关键词 岩层移动 钻孔原位监测 关键层 分区运移 岩移边界 地表沉降
下载PDF
西部缺水矿区地下水库保水的库容研究 被引量:45
10
作者 鞠金峰 许家林 朱卫兵 《煤炭学报》 EI CAS CSCD 北大核心 2017年第2期381-387,共7页
利用井下采空区进行水源蓄存和循环利用的地下水库技术是实现西部矿区保水采煤的有效措施,研究确定采空区的合理储水容量对于地下水库技术的安全高效实施至关重要。综合采用理论分析、模拟实验与现场实测等手段,就地下水库储水容量计算... 利用井下采空区进行水源蓄存和循环利用的地下水库技术是实现西部矿区保水采煤的有效措施,研究确定采空区的合理储水容量对于地下水库技术的安全高效实施至关重要。综合采用理论分析、模拟实验与现场实测等手段,就地下水库储水容量计算、以及极限库容与合理库容的确定等问题进行了研究,结果表明:地下水库的储水容量即为储水范围内覆岩垮落带破碎岩块间自由空隙量与裂隙带断裂岩层离层裂隙量的总和;基于覆岩垮落带类抛物空间形态模型的构建,得到了考虑煤层倾角条件下垮落带岩体空隙量的计算公式;利用覆岩采动裂隙分布的"O"形圈理论模型,获得了覆岩各层关键层底界面及相邻关键层间断裂岩层的离层空隙量确定方法;由此根据储水水位在覆岩垮裂带内的不同位置,建立了地下水库储水容量的数学表达式,形成了地下水库极限库容与合理库容的确定方法,指导了李家壕煤矿地下水库工程实践。 展开更多
关键词 保水采煤 煤矿地下水库 库容 关键层 采动岩体空隙
下载PDF
东胜煤田导水裂隙发育及其分区特征研究 被引量:14
11
作者 鞠金峰 马祥 +4 位作者 赵富强 刘阳军 王业征 刘乐 许家林 《煤炭科学技术》 CAS CSCD 北大核心 2022年第2期202-212,共11页
东胜煤田是我国西北部能源供给的重要基地,煤炭资源丰富但赋煤条件多变,导致不同矿区采动导水裂隙的发育存在显著差异;研究揭示东胜煤田采动导水裂隙发育的分区特征对于科学指导区域煤炭绿色高效开发具有重要意义。基于东胜煤田17对主... 东胜煤田是我国西北部能源供给的重要基地,煤炭资源丰富但赋煤条件多变,导致不同矿区采动导水裂隙的发育存在显著差异;研究揭示东胜煤田采动导水裂隙发育的分区特征对于科学指导区域煤炭绿色高效开发具有重要意义。基于东胜煤田17对主力矿井30个工作面的导水裂隙发育特征统计与实测,获得了赋煤条件变化对导水裂隙带高度(简称“导高”)的影响规律;通过对东胜煤田赋煤条件的典型分区,提出了不同分区覆岩“导高”的预计方法。结果表明,相比深部开采,浅部煤层采动引起的覆岩“导高”波动程度更为显著,尤其在埋深200~300 m,裂采比上下波动范围可达2.55倍。覆岩导水裂隙的发育受控于关键层的破断运动,顶板7~10倍采高范围之外最近一层关键层底界即为导水裂隙发育的顶界;据此合理解释了浅/深埋煤层“导高”波动性差异的原因。浅埋煤层覆岩关键层数量相对偏少,极易出现主关键层进入7~10倍采高范围的情况,造成导水裂隙直接发育至基岩顶界,引起“导高”值的异常大幅度波动。而对于深部煤层,覆岩7~10倍采高范围之外关键层数量相对偏多、间距偏小,当因地质条件改变而引起关键层位置变化时,“导高”的波动范围仅限于7~10倍采高范围附近关键层与其上部相邻关键层之间的间距,难以出现“导高”的大幅度波动现象。据此提出,在埋深低于500 m条件不能直接使用采高倍数法进行“导高”预计,应根据关键层位置及其对破断裂缝导水性影响规律进行判断;而当埋深超500 m时,可按17~24倍采高的统计值进行简单估算。 展开更多
关键词 绿色开采 导水裂隙 典型分区 关键层 东胜煤田
下载PDF
双系煤层开采相互影响下的覆岩运动与破坏规律分析 被引量:13
12
作者 陈蓥 张宏伟 +2 位作者 朱志洁 于斌 霍利杰 《中国地质灾害与防治学报》 CSCD 2014年第3期67-73,共7页
以大同矿区同忻煤矿为例,利用关键层理论、物理探测技术和数值模拟,分析双系煤层开采形成的覆岩运动与破坏规律。研究结果表明:(1)石炭二叠系煤层工作面推进至193 m时,覆岩裂隙带发育高度达到最大为174.7 m;(2)物理探测得到3-5^#... 以大同矿区同忻煤矿为例,利用关键层理论、物理探测技术和数值模拟,分析双系煤层开采形成的覆岩运动与破坏规律。研究结果表明:(1)石炭二叠系煤层工作面推进至193 m时,覆岩裂隙带发育高度达到最大为174.7 m;(2)物理探测得到3-5^#煤层开采引起的覆岩垮裂带高度约为180 m,综合理论计算与现场实测,确定覆岩裂隙带发育高度与采厚之比为11.7-12.0;(3)侏罗系煤层开采引起的底板破坏及双系间覆岩软弱夹层的缺失为双系煤层采空区联通进一步提供了条件;(4)侏罗系煤层的开采影响石炭二叠系煤层工作面超前支承压力的分布规律,当石炭系煤层工作面位于侏罗系煤层遗留煤柱下方时,超前支撑压力较无采空区时增大12.4%;(5)研究成果揭示了双系开采相互影响关系,为采取安全开采措施、减弱双系开采相互影响程度提供了科学依据。 展开更多
关键词 双系煤层 相互影响 关键层 矿压显现 采动应力
下载PDF
基于导水裂隙带高度的地下水库适应性评价 被引量:47
13
作者 李全生 鞠金峰 +2 位作者 曹志国 高富 李建华 《煤炭学报》 EI CAS CSCD 北大核心 2017年第8期2116-2124,共9页
利用煤矿井下采空区进行矿井水资源储存和循环利用的地下水库技术为西部缺水矿区的绿色开采提供了新的途径,但其推广应用仍需符合一定的适用条件。综合采用现场实测与理论分析,结合神东矿区煤矿地下水库工程实践,开展了基于导水裂隙带... 利用煤矿井下采空区进行矿井水资源储存和循环利用的地下水库技术为西部缺水矿区的绿色开采提供了新的途径,但其推广应用仍需符合一定的适用条件。综合采用现场实测与理论分析,结合神东矿区煤矿地下水库工程实践,开展了基于导水裂隙带高度的地下水库适应性评价方法研究。结果表明:地下水库储水的高效循环使用是保证该技术成功应用的关键,必须满足"水源"、"库容"和"通道"三大条件。采动覆岩导水裂隙作为地下水库水源补给的重要通道,是影响地下水库适应性的核心因素。利用"基于关键层位置的导水裂隙带高度预计方法",判别具体开采条件导水裂隙带发育高度,当导水裂隙沟通区域补给水源(含水层)时,地下水库具备适应性;否则,区域水源水体一般难以汇聚至井下采空区,从而地下水库中可供循环利用的水资源量将难以保证,地下水库保水方法一般不适用。研究结果得到了神东矿区地下水库工程的验证,并指导了李家壕煤矿地下水库适应性评价和地下水库建设选址。 展开更多
关键词 地下水库 适用性 导水裂隙 关键层 保水采煤
下载PDF
采动覆岩导水裂隙主通道分布模型及其水流动特性 被引量:43
14
作者 曹志国 鞠金峰 许家林 《煤炭学报》 EI CAS CSCD 北大核心 2019年第12期3719-3728,共10页
含水层受采动破坏后其赋存水体并非均匀地由覆岩各区域漏失至采空区,其在导水裂隙带范围内应存在水体流动的主要通道;研究揭示导水裂隙主通道的分布规律及其水流动特性对于科学指导井下涌水量预计、顶板水害防治、保水采煤等具有重要意... 含水层受采动破坏后其赋存水体并非均匀地由覆岩各区域漏失至采空区,其在导水裂隙带范围内应存在水体流动的主要通道;研究揭示导水裂隙主通道的分布规律及其水流动特性对于科学指导井下涌水量预计、顶板水害防治、保水采煤等具有重要意义。基于导水裂隙类型划分及其渗流/管流力学分析,就采动漏失水体的流动主通道分布模型进行了研究。结果表明:开采边界外侧岩体受超前支承压力作用易产生峰后压剪裂隙,裂隙导水属非达西渗流流态;而由岩层破断回转运动产生的拉剪裂隙,由于裂隙导水雷诺数相对偏大,其导水流态一般属于管流范畴,且受岩层破断位置相对开采区域的不同,又可将其划分为采区边界附近的上端张拉裂隙和下端张拉裂隙、以及中部压实区的贴合裂隙这3种。据此利用Forcheimer公式和伯努利方程对比揭示了上述2类4种裂隙导水流动特性的差异。研究得出开采边界附近的上端张拉裂隙在进流口开度、导水流量、出口流速等特征参数上均领先于其他裂隙;且由于其出口水压较小,其水流还会受到两侧邻近的压剪裂隙和下端张拉裂隙出口水流的水平径流补给。因而,含水层采动漏失水体多由上端张拉裂隙导流而来。由此基于岩层控制的关键层理论,构建形成了以关键层在开采边界处的破断尺寸参数为依据的导水裂隙带主通道分布模型。 展开更多
关键词 导水裂隙主通道 水流动特性 破断裂隙 压剪裂隙 关键层 保水采煤
下载PDF
Surface movement and deformation characteristics due to high- intensive coal mining in the windy and sandy region 被引量:34
15
作者 Zhenqi Hu Chao Chen +2 位作者 Wu Xiao Xinjing Wang Mingjie Gao 《International Journal of Coal Science & Technology》 EI 2016年第3期339-348,共10页
As China's energy strategy moving westward, the surface movement and deformation characteristics due to high-intensive coal mining in the windy and sandy region become a research hotspot. Surface movement observation... As China's energy strategy moving westward, the surface movement and deformation characteristics due to high-intensive coal mining in the windy and sandy region become a research hotspot. Surface movement observation stations were established to monitor movement and deformation in one super-large working face. Based on field measurements, the surface movement and deformation characteristics were obtained, including angle parameters, subsidence prediction parameters, etc. Besides, the angle and subsidence prediction parameters in similar mining areas are summarized; the mechanism of surface movement and deformation was analyzed with the combination of key stratum theory, mining and geological conditions. The research also indicates that compared with conventional working faces, uniform subsidence area of the subsidence trough in the windy and sandy region is larger, the trough margins are relative steep and deformation values present convergence at the margins, the extent of the trough shrink towards the goaf and the influence time of mining activities lasts shorter; the overlying rock movement and breaking characteristics presents regional particularity in the study area, while the single key stratum, thin bedrock and thick sand that can rapidly propagate movement and deformation are the deep factors, contributing to it. 展开更多
关键词 Windy and sandy region High-intensive mining Surface movement and deformation key stratum
下载PDF
Superposed disturbance mechanism of sequential overlying strata collapse for gob-side entry retaining and corresponding control strategies 被引量:13
16
作者 HAN Chang-liang ZHANG Nong +2 位作者 RAN Zhi GAO Rui YANG Hou-qiang 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第9期2258-2271,共14页
Gob-area roof rupture movement is a key disturbance factor for gob-side entry retaining.The characteristics of gob-area sequential roof collapse of overlying strata and superposed disturbance mechanism for gob-side en... Gob-area roof rupture movement is a key disturbance factor for gob-side entry retaining.The characteristics of gob-area sequential roof collapse of overlying strata and superposed disturbance mechanism for gob-side entry retaining are obtained via physical simulation and theoretical analysis,in which the scope of disturbed strata is enlarged from main roof to fracture zone.The experiment reveals that as a working face advances,roof strata sequentially collapse from bottom to top and produce multiple disturbances to gob-side entry retaining.Key strata among the overlying strata control each collapse.Main roof subsidence is divided into three stages:flexure subsidence prior to rupture,rotational subsidence during rupture and compressive subsidence after rupture.The amounts of deformation evident in each of the three stages are 15%,55%and 30%,respectively.After the master stratum collapses,main roof subsidence approaches its maximum value.The final span of the key stratum determines the moment and cycling of gob-side entry retaining disturbances.Main roof subsidence influences the load on the filling wall.The sequential roof collapse of overlying strata results in fluctuations in the gob-side entry retaining deformation.Calculation formulae for the final span of the key stratum and the filling wall load are obtained via theoretical analysis.A control method for the stability of the gob-side entry retaining’s surrounding rock is proposed,which includes 3 measures:a“dual-layer”proactive anchorage support,roadside filling with dynamic strength matching and auxiliary support during disturbance.Finally,the gob-side entry retaining of the Xiaoqing mine E1403 working face is presented as an engineering case capable of verifying the validity of the research conclusions. 展开更多
关键词 sequential roof collapse gob-side entry retaining superposed disturbance key stratum stability control
下载PDF
Breaking mechanism and control technology of sandstone straight roof in thin bedrock stope 被引量:5
17
作者 Hualei Zhang Min Tu +1 位作者 Hua Cheng Yongzhi Tang 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2020年第2期259-263,共5页
The key problem to be solved urgently is how to avoid the occurrence of support break-off and water inrush in the stoping of sandstone straight roof under the action of load transfer in unconsolidated aquifer.For this... The key problem to be solved urgently is how to avoid the occurrence of support break-off and water inrush in the stoping of sandstone straight roof under the action of load transfer in unconsolidated aquifer.For this reason,taking the thin bedrock 1602(3)working face of Huainan(the middle part of Anhui Province)Panyi Coal Mine as the engineering background,this study establishes the stope mining model by using the discrete element UDEC software and the mathematics mechanical model of the support load,and analyzes the reason of support crushing and decides to re-mining the working face by using the compulsive roof caving method.It is concluded that when the working face of sandstone straight roof is broken,the"voussoir beam"structure cannot be formed and acts on the support in the form of cantilever beam,but only when it falls to the high key stratum can the"voussoir beam"structure be formed and at this point,at this time,the bracket bears the weight of the rock layer in the range from the fractured sandstone layer to the lower critical layer.The working resistance of the support increases with the increase of the thickness and the breaking length of straight sandstone roof.When the breaking length of the roof reaches a certain extreme value,the support crushing accidents will occur.Managing roof with compulsive roof caving method can reduce the intensity of rock pressure in the stope,and the working face can be safely stoped,which provides a certain reference for similar conditions. 展开更多
关键词 Thin BEDROCK key stratum COMPULSIVE ROOF CAVING
下载PDF
Roof pre-blasting to prevent support crushing and water inrush accidents 被引量:10
18
作者 Wang Xiaozhen Xu Jialin +1 位作者 Zhu Weibing Li Yingchun 《International Journal of Mining Science and Technology》 SCIE EI 2012年第3期379-384,共6页
Support crushing and water inrush when mining under an unconsolidated confined aquifer in the Qidong Coal Mine was prevented by roof pre-blasting. The mechanism and applicable conditions for this method have been stud... Support crushing and water inrush when mining under an unconsolidated confined aquifer in the Qidong Coal Mine was prevented by roof pre-blasting. The mechanism and applicable conditions for this method have been studied. The results show that when an overburden structure that may cause support crushing and a water inrush accident exists the weakening of the primary key stratum, which thereby reduces its weighting step, roof pre-blasting is both feasible and effective. If the position of the primary key stratum can be moved upward to exceed 10 times the mining height the possibility of support crushing and water inrush disaster caused by key stratum compound breakage will be lowered. The overburden structure of the number 7121 working face was considered during the design of a technical proposal involving roof pre-blasting. After comprehensively analyzing the applicability of roof pre-blasting the resulting design prevented support crushing and water inrush disasters from happening at the number 7121 working face and laid a solid foundation for mining safely. 展开更多
关键词 Unconsolidated confined aquifer Support crushing and water inrush Roof pre-blasting key stratum
下载PDF
Coupling mechanism of roof and supporting wall in gob-side entry retaining in fully-mechanized mining with gangue backfilling 被引量:15
19
作者 Ma Zhanguo Gong Peng Fan Jinquan Geng Minmin Zhang Guowei 《Mining Science and Technology》 EI CAS 2011年第6期829-833,共5页
We analyzed the deformation characteristics of overlying stratum in backfilling with fully-mechanized and retaining roadways along the gob area coal mining technology, and established a mechanical model for the roof k... We analyzed the deformation characteristics of overlying stratum in backfilling with fully-mechanized and retaining roadways along the gob area coal mining technology, and established a mechanical model for the roof key stratum of retaining roadways along gob under the conditions of backfilling and fully- mechanized coal mining technology. Using Winkler elastic foundation theory, we analyzed a part of the key stratum under the action of elastic foundation coupling problem, and derived deflection analyt- ical expressions. Combined with specific conditions, we obtained the deflection curves for the roof key stratum of retaining roadways along gob under the conditions of backfilling and fully-mechanized coal mining technology. On this basis, we adopted the Coulomb's earth pressure theory to solve the problem of lateral pressure of the gangue filling area on the supporting wall beside the roadway and to provide the theoretical basis for reasonable selection of the distance between gangue concrete wall and roof and fur- ther discussion on the supporting stability of roadway. 展开更多
关键词 Elastic foundation Coal mining with gangue backfilling Gob-side entry retaining key stratum
下载PDF
FEASIBILITY ANALYSIS OF SAFETY SIMULTANEOUS EXTRACTION OF COAL AND COALBED METHANE 被引量:2
20
作者 李树刚 《Journal of Coal Science & Engineering(China)》 2000年第1期52-56,共5页
Coalbed methane is of great value to extract and utilize in China, but the result of such research is not satisfied yet today.The paper analyzed the storage characteristics of coalbed methane, and then studied the beh... Coalbed methane is of great value to extract and utilize in China, but the result of such research is not satisfied yet today.The paper analyzed the storage characteristics of coalbed methane, and then studied the behavior of coalbed methane using the key stratum theory of strata control.According to the features related to coalbed methane accumulations and delivery, the technique for safely simultaneous extraction of coal and coalbed methane is proposed, and benefit analysis is made too. 展开更多
关键词 simultaneous extraction key stratum theory bed seperated fissure methane drainage BENEFIT
全文增补中
上一页 1 2 下一页 到第
使用帮助 返回顶部