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Quantification of ventilation enhancement using the Eye CAN roof support 被引量:3
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作者 Shook Michael T Sindelar Mark F, +1 位作者 Jiang Hua Luo Yi 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2017年第1期153-158,共6页
Convergence of roof and floor in underground mine openings is a common occurrence. This convergence not only adversely affects the ability of workers, equipment and supplies to travel through the mine, it also reduces... Convergence of roof and floor in underground mine openings is a common occurrence. This convergence not only adversely affects the ability of workers, equipment and supplies to travel through the mine, it also reduces the effectiveness of the mine ventilation system, which is essential for the dilution of methane gas and airborne respirable dust. While installing secondary standing supports to control floor and roof convergence, such supports, by nature, partially obstruct a portion of the airway. These added obstructions inhibit the ability of the ventilation system to operate as efficiently as it could by increasing the resistance in and reducing the cross-sectional area of the airway. This study introduces and demonstrates the benefits of The Eye CAN^(TM) standing roof support, which controls floor and roof convergence and is less obstructive to air flow than conventional wooden cribs. Laboratory findings show that the normal resistance of a supported lined airway is reduced by using this new product from Burrell Mining Products, Inc., while providing the same roof support characteristics of an established product—The CANò. Load vs. displacement curves generated from laboratory tests demonstrated that this new product behaves with the same roof support characteristics as others in The CAN product family. Ventilation data gathered from a simulated mine entry was then used for computational fluid dynamics(CFD) modeling.The CFD analysis showed an improvement with The Eye CAN vs. other accepted forms of standing roof support. This proof-of-concept study suggests that, when using this new product made by Burrell Mining Products, Inc., not only will the convergence from the roof and floor be controlled, but airway resistance will also be reduced. 展开更多
关键词 Standing roof support CAN Ventilation LOAD-DISPLACEMENT Eye CAN
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Research on hydraulic-powered roof supports test problems
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作者 SUN Hong-bo JIANG Jin-qiu MA Qiang 《Journal of Coal Science & Engineering(China)》 2011年第2期201-206,共6页
The load-bearing characters of hydraulic-powered roof support with dual telescopic legs were analyzed. With a specific type hydraulic-powered roof support with dual telescopic legs for research object, the inside load... The load-bearing characters of hydraulic-powered roof support with dual telescopic legs were analyzed. With a specific type hydraulic-powered roof support with dual telescopic legs for research object, the inside load test problems in factories was analyzed, and the correct test methods were given, which can enhance the test efficiency and make the factories away from the error design of hydraulic-powered roof supports and legs. 展开更多
关键词 dual telescopic legs hydraulic-powered roof support LOAD
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Maximal loads acting on legs of powered roof support unit in longwalls with bumping hazards
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作者 Stanislaw Szweda(Silesian Technical University Faculty of Mining and Geology Mining Mechanization Institute Gliwice, Poland) 《Journal of Coal Science & Engineering(China)》 2001年第2期1-15,共15页
In the article the results of measurements of the resultant force in the legs of a powered roof support unit, caused by a dynamic interaction of the rock mass, are discussed. The measurements have been taken in the lo... In the article the results of measurements of the resultant force in the legs of a powered roof support unit, caused by a dynamic interaction of the rock mass, are discussed. The measurements have been taken in the longwalls mined with a roof fall, characterized by the highest degree of bumping hazard. It has been stated that the maximal force in the legs F m, recorded during a dynamic interaction of the rock mass, is proportional to the initial static force in the legs F st,p . Therefore a need for a careful selection of the initial load of the powered roof support, according to the local mining and geological conditions, results from such a statement. Setting the legs with the supporting load exceeding the indispensable value for keeping the direct roof solids in balance, deteriorating the operational parameters of a longwall system also has a disadvantageous influence on the value of the force in the legs and the rate of its increase, caused by a dynamic interaction of the rock mass. A correct selection of the initial load causes a decrease in the intensity of a dynamic interaction of the rock mass on powered roof supports, which also has an advantageous influence on their life. Simultaneously with the measurements of the resultant force in the legs, the vertical acceleration of the canopy was also recorded. It has enabled to prove that the external dynamic forces may act on the unit both from the roof as well as from the floor. The changes of the force in the legs caused by dynamic phenomena intrinsically created in the roof and changes of the force in the legs caused by blasting explosives in the roof of the working, have been analyzed separately. It has been stated that an increase in the loads of legs, caused by intrinsic phenomena is significantly higher than a force increase in the legs caused by blasting. It means that powered roof supports, to be operated in the workings, where the bumping hazard occurs, will also transmit the loads acting on a unit during blasting. The majority of recorded force changes in the legs has been caused by a dynamic interaction of the roof. They are characterized by a load increase coefficient K d, satisfying the inequality 1 06<K d =F m /F st,p <1 24. A much smaller number of cases, when the external load acted on the bases, was recorded. Individual, recorded results of measurements indicate that changes of the force in the legs, caused by external loads of this type, run more intensively due to roof loads (1 08< K d<1 80),particularly in these cases when the near the roof layer of the seam is under mining. A determination of more precise relations among the changes of forces in the legs, caused by a dynamic interaction of the floor and the bases and the mining and geological conditions requires a performance of additional underground tests. 展开更多
关键词 LONGWALL bumping hazard powered roof support unit
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Influence of canopy ratio of powered roof support on longwall working stability——A case study 被引量:1
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作者 Sylwester Rajwa Tomasz Janoszek Stanis?aw Prusek 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2019年第4期591-598,共8页
The case study describes longwall coal seam A in a hard coal mine,where longwall coal face stability loss and periodic roof fall occurrences had been registered.The authors have attempted to explain the situation base... The case study describes longwall coal seam A in a hard coal mine,where longwall coal face stability loss and periodic roof fall occurrences had been registered.The authors have attempted to explain the situation based on in-situ measurements and observations of the longwall working as well as numerical simulation.The calculations included several parameters,such as powered roof support geometry in the form of the canopy ratio,which is a factor that influences load distribution along the canopy.Numerical simulations were realized based on a rock mass model representing realistic mining and geological conditions at a depth of 600 m below surface for coal seam A.Numerical model assumptions are described,while the obtained results were compared with the in-situ measurements.The conclusions drawn from this work can complement engineering knowledge utilized at the stage of powered roof support construction and selection in order to improve both personnel safety and longwall working stability,and to achieve better extraction. 展开更多
关键词 COAL MINING Modelling Powered roof supports LONGWALL workings Safety STABILITY
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Bearing mechanism of roof and rib support structure in automatically formed roadway and its support design method
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作者 JIANG Bei WANG Ming-zi +4 位作者 WANG Qi XIN Zhong-xin XING Xue-yang DENG Yu-song YAO Liang-di 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第7期2467-2487,共21页
Non-pillar mining technology with automatically formed roadway is a new mining method without coal pillar reservation and roadway excavation.The stability control of automatically formed roadway is the key to the succ... Non-pillar mining technology with automatically formed roadway is a new mining method without coal pillar reservation and roadway excavation.The stability control of automatically formed roadway is the key to the successful application of the new method.In order to realize the stability control of the roadway surrounding rock,the mechanical model of the roof and rib support structure is established,and the influence mechanism of the automatically formed roadway parameters on the compound force is revealed.On this basis,the roof and rib support structure technology of confined lightweight concrete is proposed,and its mechanical tests under different eccentricity are carried out.The results show that the bearing capacity of confined lightweight concrete specimens is basically the same as that of ordinary confined concrete specimens.The bearing capacity of confined lightweight concrete specimens under different eccentricities is 1.95 times higher than those of U-shaped steel specimens.By comparing the test results with the theoretical calculated results of the confined concrete,the calculation method of the bearing capacity for the confined lightweight concrete structure is selected.The design method of confined lightweight concrete support structure is established,and is successfully applied in the extra-large mine,Ningtiaota Coal Mine,China. 展开更多
关键词 automatically roadway with non-pillar confined lightweight concrete roof and rib support mechanical model bearing behaviour
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Roof pre-blasting to prevent support crushing and water inrush accidents 被引量:10
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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
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冲击地压矿井坚硬顶板工作面充填开采降载防冲机理及应用
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作者 王家臣 王兆会 《中国煤炭》 北大核心 2025年第1期12-22,共11页
坚硬顶板是导致强矿压甚至冲击地压的重要因素,充填开采则是控制坚硬顶板运动模式的有效手段。为分析冲击地压矿井坚硬顶板工作面充填开采的降载防冲效果,以古城煤矿1123工作面为工程背景,采用理论分析、数值计算和现场实测手段研究坚... 坚硬顶板是导致强矿压甚至冲击地压的重要因素,充填开采则是控制坚硬顶板运动模式的有效手段。为分析冲击地压矿井坚硬顶板工作面充填开采的降载防冲效果,以古城煤矿1123工作面为工程背景,采用理论分析、数值计算和现场实测手段研究坚硬顶板破断致冲条件、充填体支撑下坚硬顶板运动特征及其降载防冲机理。结果表明:坚硬顶板动力破断条件为弹性区能量释放率高于塑形区能量耗散率,提出了动载冲击力计算方法,给出了动载荷和静态应力场组合作用下,冲击地压灾害发生原理;构建了充填体支撑作用下坚硬顶板沉降模型,得到了坚硬顶板沉降曲线,充填率是控制坚硬顶板沉降模式的关键因素;充填率提升至90%,坚硬顶板转变为连续沉降模式,构建了坚硬顶板连续沉降条件下支架围岩相互作用模型,提出了支架阻力计算方法,揭示了充填开采降载防冲机理;将充填开采降载防冲技术应用于1123工作面,提出了“三位一体”充填率提升技术,微震监测和顶板下沉量检测结果表明降载防冲效果良好,围岩控制效果显著提升。 展开更多
关键词 充填开采 冲击地压 坚硬顶板 充填率 支架载荷
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双层管棚穿越市政道路引起地表竖向位移研究
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作者 吴丽萍 刘嘉辉 《科学技术创新》 2025年第4期155-159,共5页
本文以长春某隧道暗挖段穿越市政道路项目为依托,利用MIDAS GTS NX有限元软件,建立了双层管棚支护下不同管棚直径、管间间距、层间间距参数下的三维有限元模型,分析各参数对围岩竖向位移的控制效果,结果表明:三种参数对竖向位移的变化... 本文以长春某隧道暗挖段穿越市政道路项目为依托,利用MIDAS GTS NX有限元软件,建立了双层管棚支护下不同管棚直径、管间间距、层间间距参数下的三维有限元模型,分析各参数对围岩竖向位移的控制效果,结果表明:三种参数对竖向位移的变化影响分别为正相关、负相关、正相关,且均表现为对拱顶的沉降控制效果最好;当直径与层间间距增大或环向间距减小到某个数值后,其对沉降的控制效果会减弱,故管棚直径、环向间距、层间间距三种参数的选择需要从工艺、技术、进度、成本等方面综合考虑。 展开更多
关键词 暗挖法 管棚支护 数值模拟
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基于运动姿态感知的综放支架主动控顶空间研究
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作者 曾庆良 雷小万 +3 位作者 孟昭胜 万丽荣 班新亮 胡雨龙 《煤炭学报》 北大核心 2025年第1期645-660,共16页
综放支架是综放采场关键支护与主动放煤装置,其主动触支顶煤行为可有效引导顶煤智能有序破碎。为开展支架主动扰控顶煤理论及相关研究,明确综放支架对顶煤的主动触支工作空间,提出一种综放支架各部件相对空间姿态及绝对空间位姿动态感... 综放支架是综放采场关键支护与主动放煤装置,其主动触支顶煤行为可有效引导顶煤智能有序破碎。为开展支架主动扰控顶煤理论及相关研究,明确综放支架对顶煤的主动触支工作空间,提出一种综放支架各部件相对空间姿态及绝对空间位姿动态感知方法,以期提升综放支架对顶煤碎放过程可控性。首先,借助Denavit-Hartenberg(D-H)方法建立了综放支架空间姿态数学模型,分析得到支架顶梁和放煤机构在各关节节点坐标系与本体坐标系下坐标,明确了综放支架各关键部件之间的相对姿态及运动耦合关系;在此基础上建立了综放工作面全局感知模型并求解得到了支架的绝对空间位姿数据,获得了工作面顶板、底板倾角对综放支架空间支护姿态影响。其次,提出并计算了综放支架顶梁触支空间和放煤机构支护空间分布模型,获得了综放支架对顶煤的主动调控范围,同时使用初值优选的Levenberg-Marquardt(L-M)优化算法探究支架主动触顶姿态的调控方法与立柱的有效驱动行程。最后,搭建了支架姿态数据采集系统,依托山东省菏泽市赵楼煤矿7303综放工作面获取了支架运动过程中真实空间姿态参数数据,对比理论解算数据与传感器实测数据,验证了该空间位姿测量方法的可行性与准确性。结果表明,使用该方法解算的顶梁姿态与传感器测量结果重合率达98.26%,为进一步提高支架的空间位姿感知技术提供了研究思路。 展开更多
关键词 智能综放开采 综放支架 触支空间 顶煤调控 触顶姿态
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超长钢结构屋盖施工及服役过程健康监测与分析
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作者 袁焕鑫 饶韬 +3 位作者 杜新喜 向海波 程亮 曹和平 《建筑结构》 北大核心 2025年第2期43-49,91,共8页
武汉江夏大花山户外运动中心钢结构屋盖为超长空间网格结构,为研究其在施工卸载过程和服役状态的受力和变形情况,在结构关键部位布置传感器,并进行了为期两年的应力、变形和温度健康监测。施工监测结果表明结构整体的应力和变形变化平稳... 武汉江夏大花山户外运动中心钢结构屋盖为超长空间网格结构,为研究其在施工卸载过程和服役状态的受力和变形情况,在结构关键部位布置传感器,并进行了为期两年的应力、变形和温度健康监测。施工监测结果表明结构整体的应力和变形变化平稳,应力和竖向位移变化最大值出现在馆外屋盖上,且均满足设计和规范要求。服役健康监测结果表明温度作用是导致结构成型后受力和变形变化的主要因素,在不均匀温度场的影响下馆外边桁架对温度变化最为敏感,其应力与温度的线性系数最大为-4.64,同时温度升高会使得屋盖发生整体膨胀变形,导致边桁架跨中竖向位移减小。最后针对钢结构屋盖提出了优化的弹性支座分布方案,该方案相较于支座固接方案的温度应力平均减少了74.07%。 展开更多
关键词 超长钢结构屋盖 结构健康监测 卸载 温度影响 支座刚度
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Preventing roof fall fatalities during pillar recovery:A ground control success story 被引量:4
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作者 Mark Christopher Gauna Michael 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2017年第1期107-113,共7页
For decades, pillar recovery accounted for a quarter of all roof fall fatalities in underground coal mines.Studies showed that a miner on a pillar recovery section was at least three times more likely to be killed by ... For decades, pillar recovery accounted for a quarter of all roof fall fatalities in underground coal mines.Studies showed that a miner on a pillar recovery section was at least three times more likely to be killed by a roof fall than other coal miners. Since 2007, however, there has been just one fatal roof fall on a pillar line. This paper describes the process that resulted in this historic achievement. It covers both the key research findings and the ways in which those insights, beginning in the early 2000 s, were implemented in mining practice. One key finding was that safe pillar recovery requires both global and local stability.Global stability is addressed primarily through proper pillar design, and became a major focus after the2007 Crandall Canyon mine disaster. But the most significant improvements resulted from detailed studies that showed that local stability, defined as roof control in the immediate work area, could be achieved with three interventions:(1) leaving an engineered final stump, rather than extracting the entire pillar,(2) enhancing roof bolt support, particularly in intersections, and(3) increasing the use of mobile roof supports(MRS). A final component was an emphasis on better management of pillar recovery operations.This included a focus on worker positioning, as well as on the pillar and lift sequences, MRS operations,and hazard identification. As retreat mines have incorporated these elements into their roof control plans,it has become clear that pillar recovery is not ‘‘inherently unsafe." The paper concludes with a discussion of the challenges that remain, including the problems of rib falls and coal bursts. 展开更多
关键词 Retreat mining roof support Room-and-pillar Ground control
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Q690D钢焊后分层开裂机理研究
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作者 于礼军 姬庆涛 +3 位作者 吴成峰 张学东 杜传坤 时玉亭 《精密成形工程》 北大核心 2025年第2期102-110,共9页
目的研究液压支架部件(底座)焊接后,Q690D钢板母材厚度约1/2处出现分层开裂的根本原因,确认是原材料自身的缺陷还是生产过程中工艺方法存在的缺陷,研究焊接后Q690D钢板母材T/2(T为板材厚度)处开裂的机理,找到产生此类缺陷的根源。方法... 目的研究液压支架部件(底座)焊接后,Q690D钢板母材厚度约1/2处出现分层开裂的根本原因,确认是原材料自身的缺陷还是生产过程中工艺方法存在的缺陷,研究焊接后Q690D钢板母材T/2(T为板材厚度)处开裂的机理,找到产生此类缺陷的根源。方法在疑似开裂处取样(冷加工铣削,不影响已有缺陷),对试样进行编号,制作各类检测样品,分析不同试样不同位置的金相组织、硬度数值、化学成分、断口形貌、断口处化学成分,确认是否为分层开裂缺陷,并进一步多角度对比各项检测数据,确定缺陷类型及缺陷形成的根本原因。结果综合判断检测数值,确定原材料在轧制过程中存在一定程度的内部成分偏析为母材开裂的根本原因,火焰热切割及焊接后的热应力为潜在的微裂纹尖端萌生提供了外部条件,促使偏析带的脆硬层发生局部的开裂并进一步扩展形成裂纹。结论原钢板母材中存在一定程度的A类、B类、D类夹杂物,聚集在T/2处形成“脆性夹层”,在热切割及焊接热输入(产生的内应力)作用下萌生裂纹并扩展开裂。 展开更多
关键词 液压支架 Q690D 焊接 偏析 分层开裂 金相 能谱分析
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经坊煤矿六采区轨道巷支护参数设计与优化
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作者 崔国宏 刘增辉 +3 位作者 李永飞 龚固 吴子扬 马凡泰 《煤炭技术》 2025年第4期6-10,共5页
针对六采区池里区域轨道巷顶板下沉严重且上方出现离层的现象,结合该巷道的实际地质情况,提出“锚杆+锚索+菱形金属网+钢筋梁”联合支护的技术,通过对锚杆锚索参数的计算,确定了相应的支护方案,并且运用了数值模拟的方法,揭示了支护前... 针对六采区池里区域轨道巷顶板下沉严重且上方出现离层的现象,结合该巷道的实际地质情况,提出“锚杆+锚索+菱形金属网+钢筋梁”联合支护的技术,通过对锚杆锚索参数的计算,确定了相应的支护方案,并且运用了数值模拟的方法,揭示了支护前后位移与应力的演化规律,结果表明:未支护前的最大顶板下沉量为0.176 m,顶板上方与岩层之间出现离层,离层量为0.06 m。在进行支护后,巷道的变形量得到有效改善,最大顶板下沉量为0.091 m,顶板上方未见明显离层,验证了该支护方案可以有效地改善巷道围岩变形,为复杂情况下的支护提供了借鉴。 展开更多
关键词 顶板 离层 联合支护
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Validation of critical strain technique for assessing stability of coal mine intersections and its potential for development of roof control plans
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作者 S.Sinha Y.P.Chugh 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2018年第2期380-389,共10页
Both room-and-pillar and longwall mining systems develop underground excavations whose stability must be ensured over their entire service life. Even though rock bolts have been extensively used as a support element i... Both room-and-pillar and longwall mining systems develop underground excavations whose stability must be ensured over their entire service life. Even though rock bolts have been extensively used as a support element in US coal mines for about 40 years, limited research has been conducted in quantifying its composite reinforcement effects. Recently, the authors suggested an approach to quantify the reinforcement effect of roof supports over a designated area based on critical failure strains in tension, compression and shear. This paper validates the critical strain technique(CST) using a case study and justifies the magnitude of selected critical strain by corroborating with the US roof fall statistics. Intersections are vulnerable to failure due to the larger exposed roof span and associated stress concentrations. Through numerical application of the CST to a case study, it was demonstrated that modifying the opening orientation and installing reinforcement at critical locations can help to improve the overall stability of intersections. 展开更多
关键词 roof support Critical strain approach Numerical modeling
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山岭隧道围岩稳定性分析及管棚支护优化研究
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作者 刘俭 《施工技术(中英文)》 2025年第4期67-73,共7页
以都江堰至四姑娘山山地轨道交通工程箭竹隧道为研究对象,基于数值模拟和现场监测数据,系统研究了围岩变形特征及管棚支护参数对围岩稳定性的影响规律。通过建立三维有限元模型,模拟不同施工工况下围岩应力场和位移场的变化,分析管棚直... 以都江堰至四姑娘山山地轨道交通工程箭竹隧道为研究对象,基于数值模拟和现场监测数据,系统研究了围岩变形特征及管棚支护参数对围岩稳定性的影响规律。通过建立三维有限元模型,模拟不同施工工况下围岩应力场和位移场的变化,分析管棚直径、布置间距、布置范围及超前注浆厚度等参数对围岩变形控制效果的影响。研究结果表明:增大管棚直径和布置范围能显著降低拱顶沉降,提高支护效果;减小管棚布置间距能有效控制围岩变形;超前注浆加固厚度对围岩稳定性影响显著,600mm注浆厚度下拱顶沉降较未注浆时减小40%以上。现场监测数据验证了数值模拟的准确性,表明优化后的管棚支护方案能有效控制围岩变形,确保施工安全。 展开更多
关键词 隧道 围岩 管棚支护 超前注浆 稳定性 沉降 数值模拟
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液压支架回撤通道的设计与施工
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作者 房白 倪超 王金钟 《煤炭技术》 2025年第3期22-24,共3页
为使综采(放)工作面液压支架安全、高效回撤,基于支架基本参数、撤架工艺等因素,理论计算出支架回撤通道的宽度、高度,并对回撤通道顶板支护方式进行优化设计,采用锚杆(锚索)主动支护方式,代替探头工字钢加贴帮单体支柱的传统支护方式,... 为使综采(放)工作面液压支架安全、高效回撤,基于支架基本参数、撤架工艺等因素,理论计算出支架回撤通道的宽度、高度,并对回撤通道顶板支护方式进行优化设计,采用锚杆(锚索)主动支护方式,代替探头工字钢加贴帮单体支柱的传统支护方式,提高了支架回撤施工的安全性,降低了劳动强度,实现了液压支架的安全快速回撤。 展开更多
关键词 液压支架 回撤通道 顶板支护
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王家岭矿18109工作面末采技术研究
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作者 景东东 《煤》 2025年第2期73-76,共4页
为提高综放工作面末采效率及安全保障能力,以王家岭矿18109工作面为研究对象,结合现场条件及开采设备布置等给出末采技术方案及顶板管理措施。18109工作面在末采期间采用铺设柔性网、锚索(中空注浆锚索)等方式有效维护了末采期间顶板稳... 为提高综放工作面末采效率及安全保障能力,以王家岭矿18109工作面为研究对象,结合现场条件及开采设备布置等给出末采技术方案及顶板管理措施。18109工作面在末采期间采用铺设柔性网、锚索(中空注浆锚索)等方式有效维护了末采期间顶板稳定;同时通过采煤机截割回撤通道方式避免了预掘回撤通道存在的支护难度大、围岩变形严重等问题。现场应用后,王家岭矿18109末采阶段顶板、煤壁及回撤通道等始终保持稳定,保持2.4 m/d的推进速度,为采面安全高效回采奠定了良好基础。 展开更多
关键词 综放工作面 末采 顶板支护
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Vertical load capacities of roof truss cross members
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作者 Gearhart David F. Mohamed Khaled Morsy 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2016年第3期517-520,共4页
Trusses used for roof support in coal mines are constructed of two grouted bolts installed at opposing forty-five degree angles into the roof and a cross member that ties the angled bolts together. The load on the cro... Trusses used for roof support in coal mines are constructed of two grouted bolts installed at opposing forty-five degree angles into the roof and a cross member that ties the angled bolts together. The load on the cross member is vertical, which is transverse to the longitudinal axis, and therefore the cross member is loaded in the weakest direction. Laboratory tests were conducted to determine the vertical load capacity and deflection of three different types of cross members. Single-point load tests, with the load applied in the center of the specimen and double-point load tests, with a span of 2.4 m, were conducted. For the single-point load configuration, the yield of the 25 mm solid bar cross member was nominally 98 kN of vertical load, achieved at 42 cm of deflection. For cable cross members, yield was not achieved even after 45 cm of deflection. Peak vertical loads were about 89 kN for 17 mm cables and67 kN for the 15 mm cables. For the double-point load configurations, the 25 mm solid bar cross members yielded at 150 kN of vertical load and 25 cm of deflection. At 25 cm of deflection individual cable strands started breaking at 133 and 111 kN of vertical load for the 17 and 15 mm cable cross members respectively. 展开更多
关键词 roof truss Coal mining Ground control Load capacity roof support
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沿空送巷施工顶板支护技术与支护效果评估
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作者 王伟 《凿岩机械气动工具》 2025年第3期104-106,共3页
沿空送巷施工在矿山和地下工程中较为常见,顶板支护技术是确保工程安全的关键技术,涉及多种支护方法,主要包括预应力锚杆和高强度支护网支护。有效的支护技术不仅可以防止顶板崩塌,提高施工安全性,还能显著提升施工效率。文章全面探讨... 沿空送巷施工在矿山和地下工程中较为常见,顶板支护技术是确保工程安全的关键技术,涉及多种支护方法,主要包括预应力锚杆和高强度支护网支护。有效的支护技术不仅可以防止顶板崩塌,提高施工安全性,还能显著提升施工效率。文章全面探讨了沿空送巷施工顶板支护关键技术及其评估方法,并结合案例,研究了不同技术在实际应用中的效果,提出了支护策略优化建议。 展开更多
关键词 沿空送巷 顶板支护技术 预应力锚杆 高强度支护网
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预控顶分段空场嗣后充填采矿法高效回采支护技术研究
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作者 耿帅 孙丁丁 +3 位作者 高光宇 何伟 尹爱民 宁刘伟 《煤炭技术》 2025年第3期31-34,共4页
为解决某铁矿破碎围岩区域回采稳定性问题,采用预控顶分段空场嗣后充填采矿法安全高效回采,开展预控顶巷道支护方案优化研究。以某铁矿北部区域破碎矿体为研究对象,结合矿体赋存条件、预控顶作用机理及岩体稳定性等因素,提出预控顶分段... 为解决某铁矿破碎围岩区域回采稳定性问题,采用预控顶分段空场嗣后充填采矿法安全高效回采,开展预控顶巷道支护方案优化研究。以某铁矿北部区域破碎矿体为研究对象,结合矿体赋存条件、预控顶作用机理及岩体稳定性等因素,提出预控顶分段空场嗣后充填采矿法的技术方案;其次结合现有采切工程布置方案,对采矿方法进行优化,提出了“锚网喷+短锚索+长锚索”的护顶巷联合支护方法。现场实践验证,该预控顶支护技术适合破碎围岩矿体的开采技术条件,具有采场稳定性好、损失贫化率低、综合回采成本低等优点,取得良好应用效果,研究成果可为类似矿山高效回采提供一定的参考。 展开更多
关键词 破碎矿体 预控顶支护 分段空场嗣后充填采矿法 联合支护技术
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