期刊文献+
共找到9篇文章
< 1 >
每页显示 20 50 100
锚杆支护巷道巷旁锚索加强支护沿空留巷围岩控制机理研究及应用 被引量:161
1
作者 华心祝 马俊枫 许庭教 《岩石力学与工程学报》 EI CAS CSCD 北大核心 2005年第12期2107-2112,共6页
沿空留巷技术在薄、中厚煤层中应用较多,但在3m以上较大采高工作面中应用极少,究其主要原因是已往建立的沿空留巷力学模型欠妥、巷内与巷旁支护方式不合理。从如何提高岩层的自我承载能力入手,提出了一种主动的巷旁加强支护方式——巷... 沿空留巷技术在薄、中厚煤层中应用较多,但在3m以上较大采高工作面中应用极少,究其主要原因是已往建立的沿空留巷力学模型欠妥、巷内与巷旁支护方式不合理。从如何提高岩层的自我承载能力入手,提出了一种主动的巷旁加强支护方式——巷旁采用锚索加强支护,巷内采用锚杆支护。建立了考虑巷帮煤体承载作用和巷旁锚索加强作用的沿空留巷力学模型,并分析了巷内锚杆支护和巷旁锚索加强支护的作用机理。利用理论分析所得结论,对淮北朱庄矿3625较大采高工作面风巷进行巷旁支护设计及工程实践。研究成果为较大采高工作面沿空留巷技术提供了理论依据和借鉴经验。 展开更多
关键词 采矿工程 沿空留巷 围岩控制机理 巷旁锚索加强支护 锚杆支护 巷帮煤体
下载PDF
邢东矿高应力破碎矩形巷道围岩控制机理与技术研究
2
作者 詹平 《华北科技学院学报》 2022年第2期43-55,共13页
邢东矿采深在600~1300 m,围岩应力高,围岩破坏范围较大,两帮支撑失稳,支护体严重破坏。论文主要围绕着高应力破碎围岩矩形巷道的控制机理和控制技术两个方面,依次对矩形巷道支护阻力与围岩应力分布规律、围岩变形规律和支架材质、结构... 邢东矿采深在600~1300 m,围岩应力高,围岩破坏范围较大,两帮支撑失稳,支护体严重破坏。论文主要围绕着高应力破碎围岩矩形巷道的控制机理和控制技术两个方面,依次对矩形巷道支护阻力与围岩应力分布规律、围岩变形规律和支架材质、结构与承载能力的关系等方面,采用理论分析、数值模拟和现场试验等研究方法进行了系统性研究。研究结果如下:建立了加载支护阻力的应力分布计算模型,解决了以往无加载支护阻力计算矩形巷道围岩应力的弊端,揭示了加载支护阻力下的矩形巷道围岩应力分布规律,随支护强度增大巷道围岩移近量减小而呈负指数函数关系,当在支护强度不低于0.3 MPa的情况下,巷道围岩的变形破坏能达到巷道使用要求,从而确定了锚杆索主动支护和工字钢环形支架被动联合支护形式,为类似条件下矿井支护形式提供参考借鉴。 展开更多
关键词 高应力破碎 围岩控制机理 支护阻力 应力分布 工字钢环形支架
下载PDF
大倾角煤层综采面围岩控制及支护 被引量:1
3
作者 韩耀文 《机械管理开发》 2018年第4期74-75,103,共3页
以某煤矿工作面为例,主要从顶底板的稳定性控制措施和支架的构造参数设置两方面进行了阐述,对大倾角工作面的关键技术进行了探究,以找出大倾角工作面支架围岩之间相互作用的关系,保障在开采过程中能够对煤层进行维护,同时为大倾角煤层... 以某煤矿工作面为例,主要从顶底板的稳定性控制措施和支架的构造参数设置两方面进行了阐述,对大倾角工作面的关键技术进行了探究,以找出大倾角工作面支架围岩之间相互作用的关系,保障在开采过程中能够对煤层进行维护,同时为大倾角煤层综采面开采提供了理论与实践依据。 展开更多
关键词 大倾角煤层 综采面 围岩控制机理
下载PDF
屯兰煤矿12501工作面复合顶板煤巷围岩控制技术研究 被引量:2
4
作者 陆齐 《山西煤炭》 2014年第4期42-44,共3页
复合顶板条件下的巷道围岩离层较大、易冒落、难以形成承载结构,其支护较普通条件下的巷道困难的多;以屯兰煤矿12501工作面皮带顺槽为工程背景,分析了复合顶板变形破坏的主要特征和原因,针对性的提出了复合顶板条件下的巷道支护方案,通... 复合顶板条件下的巷道围岩离层较大、易冒落、难以形成承载结构,其支护较普通条件下的巷道困难的多;以屯兰煤矿12501工作面皮带顺槽为工程背景,分析了复合顶板变形破坏的主要特征和原因,针对性的提出了复合顶板条件下的巷道支护方案,通过现场试验和观测数据表明该支护方案取得了良好的效果。 展开更多
关键词 复合顶板 控制 作用机理 锚网索联合支护
下载PDF
Ground response and failure mechanism of gob-side entry by roof cutting with hard main roof
5
作者 ZHU Heng-zhong XU Lei WEN Zhi-jie 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第7期2488-2512,共25页
This study is the result of long-term efforts of the authors’team to assess ground response of gob-side entry by roof cutting(GSERC)with hard main roof,aiming at scientific control for GSERC deformation.A comprehensi... This study is the result of long-term efforts of the authors’team to assess ground response of gob-side entry by roof cutting(GSERC)with hard main roof,aiming at scientific control for GSERC deformation.A comprehensive field measurement program was conducted to determine entry deformation,roof fracture zone,and anchor bolt(cable)loading.The results indicate that GSERC deformation presents asymmetric characteristics.The maximum convergence near roof cutting side is 458 mm during the primary use process and 1120 mm during the secondary reuse process.The entry deformation is closely associated with the primary development stage,primary use stage,and secondary reuse stage.The key block movement of roof cutting structure,a complex stress environment,and a mismatch in the supporting design scheme are the failure mechanism of GSERC.A controlling ideology for mining states,including regional and stage divisions,was proposed.Both dynamic and permanent support schemes have been implemented in the field.Engineering practice results indicate that the new support scheme can efficiently ensure long-term entry safety and could be a reliable approach for other engineering practices. 展开更多
关键词 gob-side entry by roof cutting ground response failure mechanism following mining states control hard main roof
下载PDF
基于非弹性区理论巷道支护技术研究
6
作者 付中华 《能源与节能》 2018年第12期108-110,共3页
为改善经坊煤业巷道支护效果,提高巷道稳定性,以3-707工作面运输顺槽地质条件为基础,分析了巷道围岩控制机理,基于非弹性区理论确定了巷道支护方案,并在现场进行了实践。根据监测结果,巷道围岩顶底板移近量最大为170 mm,两帮移近量最大... 为改善经坊煤业巷道支护效果,提高巷道稳定性,以3-707工作面运输顺槽地质条件为基础,分析了巷道围岩控制机理,基于非弹性区理论确定了巷道支护方案,并在现场进行了实践。根据监测结果,巷道围岩顶底板移近量最大为170 mm,两帮移近量最大为140 mm,围岩变形量较小,巷道稳定性较好。 展开更多
关键词 围岩控制机理 非弹性区理论 巷道支护 变形量
下载PDF
Deformation mechanism of surrounding rocks and key control technology for a roadway driven along goaf in fully mechanized top-coal caving face 被引量:10
7
作者 李学华 《Journal of Coal Science & Engineering(China)》 2003年第1期28-32,共5页
The variation of the stress in the bolted surrounding rocks structure of the roadway driven along goaf in a fully mechanized top coal caving face with moderate stable conditions are studied by using numerical calculat... The variation of the stress in the bolted surrounding rocks structure of the roadway driven along goaf in a fully mechanized top coal caving face with moderate stable conditions are studied by using numerical calculation. The essential deformation characteristics of the surrounding rocks in this kind of roadway are obtained and the key technology of bolting support used under these conditions is put forward. 展开更多
关键词 moderate stability gob side entry driving in a fully mechanized top coal caving face stress deformation bolting support
下载PDF
Failure mechanism of Mesozoic soft rock roadway in Shajihai coal mine and its surrounding rock control 被引量:7
8
作者 Yuan Yue Zhu Yongjian +1 位作者 Wang Weijun Yu Weijian 《International Journal of Mining Science and Technology》 SCIE EI 2014年第6期853-858,共6页
In view of the buckling failure caused by large deformation of Mesozoic soft rock roadway in Shajihai mining area, such as serious roof fall, rib spalling, floor heave, etc., based on the detail site investigation,the... In view of the buckling failure caused by large deformation of Mesozoic soft rock roadway in Shajihai mining area, such as serious roof fall, rib spalling, floor heave, etc., based on the detail site investigation,theoretical analysis, mineral composition test, microstructure test, water-physical property test and field experiments were carried out. And we revealed the compound failure mechanism of Mesozoic soft rock roadway in Shajihai mining area, namely the molecule expansion-shear slip of weak structural plane-construction disturbance. On this basis, the coupling support technology whose core is constant resistance with large deformation bolt was proposed. The feature of this supporting technology is that a new type of structural composite material was used, which makes the supporting system not only has the ideal deformation characteristics, but also has high supporting resistance. Thus the fully release of plastic energy within surrounding rock and reasonable control of the thickness of the plastic ring were realized. Then the differential deformation between the surrounding rock and support was eliminated by the secondary coupling support of bolt–mesh–cable, and the bolt with high strength was applied in the base angle to control floor. Eventually the collaborative bearing system of surrounding rock–support was formed. Through field tests the validity and rationality of support was also verified. 展开更多
关键词 Mesozoic soft rock Failure mechanism Constant resistance with large deformationsupport Control measures Collaborative bearing
下载PDF
Failure mechanism and stability control technology of rock surrounding a roadway in complex stress conditions 被引量:8
9
作者 Yu Yang Bai Jianbiao +3 位作者 Chen Ke Wang Xiangyu Xiao Tongqiang Chen Yong 《Mining Science and Technology》 EI CAS 2011年第3期301-306,共6页
To solve the problem of supporting three downhill coal structures in the Yongan Coal Mine of Shanxi Jincheng, we studied the regular development of stress and plastic zones and characteristics of deformation of rock s... To solve the problem of supporting three downhill coal structures in the Yongan Coal Mine of Shanxi Jincheng, we studied the regular development of stress and plastic zones and characteristics of deformation of rock surrounding roadway groups after a period of roadway driving, mining one side as well as mining both sides, we used FLAC 3D for our numerical and theoretical analyses. Field test were carried out, where we revealed the deformation mechanism of roadways and its coal pillars in complex stress conditions. We proposed a roadway stability control technology using backwall grouting with high-water rapid hardening material and combined support with bolt and cable anchoring after mining both sides. Our field practices showed that deformation of rock surrounding roadways can be controlled with this technology. 展开更多
关键词 Both sides miningNumerical simulation FLAC3D Grouting reinforcementSupport parameters
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部