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Mechanism and technology study of collaborative support with long and short bolts in large-deformation roadways 被引量:5
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作者 Yu Hui Niu Zhiyong +2 位作者 Kong Linggen Hao Caicheng Cao Peng 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2015年第4期587-593,共7页
Common short bolts of equal length are widely used to support the roofs of roadways in coal mines.However, they are insufficient to keep the roof stable against large deformations, so docking long bolts with high leve... Common short bolts of equal length are widely used to support the roofs of roadways in coal mines.However, they are insufficient to keep the roof stable against large deformations, so docking long bolts with high levels of elongation that can adapt to large deformations of the surrounding rock have been adopted. This paper proposes a collaborative support method that uses long and short bolts. In this study,the mechanism of docking long bolts and collaborative support was studied. Numerical simulation, similarity simulation, and field testing were used to analyze the distribution law of the displacement, stress,and plastic failure in the surrounding rock under different support schemes. Compared with the equal-length short bolt support, the collaborative support changed the maximum principal stress of the shallow roof from tensile stress to compressive stress, and the minimum principal stress of the roof significantly increased. The stress concentration degree of the anchorage zone clearly increased. The deformation of the roof and the two sides was greatly reduced, and the subsidence shape of the shallow roof changed from serrated to a smooth curve. The roof integrity was enhanced, and the roof moved down as a whole. Plastic failure significantly decreased, and the plastic zone of the roof was within the anchorage range. The similarity simulation results showed that, under the maximum mining stress,the roof collapsed with the equal-length short bolt support but remained stable with the collaborative support. The collaborative support method was successfully applied in the field and clearly improved the stability of the surrounding rock for a large deformation roadway. 展开更多
关键词 大变形巷道 支护机理 短锚杆 协同 最大主应力 巷道顶板 技术 顶板稳定
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特厚煤层回采巷道顶板锚杆-长锚杆协同支护研究
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作者 肖建 《陕西煤炭》 2015年第4期9-12,共4页
为解决特厚煤层回采巷道顶板下沉大、易冒顶的难题,提出了锚杆-长锚杆协同支护思想,采用实验室试验对比分析了长锚杆和小孔径预应力锚索的力学特性,结合数值模拟方法对比研究了锚杆-锚索联合支护与锚杆-长锚杆协同支护对厚煤层巷道顶板... 为解决特厚煤层回采巷道顶板下沉大、易冒顶的难题,提出了锚杆-长锚杆协同支护思想,采用实验室试验对比分析了长锚杆和小孔径预应力锚索的力学特性,结合数值模拟方法对比研究了锚杆-锚索联合支护与锚杆-长锚杆协同支护对厚煤层巷道顶板的支护效果,并在南阳坡煤矿4103顺槽进行了工业性对比试验。结果表明,锚杆-长锚杆协同支护技术能够适应巷道顶板大变形,有效防止锚索破断导致的巷道冒顶。 展开更多
关键词 长锚杆 协同支护 预应力锚索 数值模拟
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隧道下穿高速公路长管棚预支护技术研究 被引量:1
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作者 李志强 《科学技术创新》 2022年第9期145-151,共7页
隧道下穿既有公路的施工过程中,受浅埋、复杂水文地质因素影响,洞内开挖过程中随着围岩垂直、水平位移增加会引起地表沉陷、洞内掉块坍塌等问题。为了解决上述问题本文以HK客专某段隧道工程为例,建立了有限元模型,进行了长管棚预支护体... 隧道下穿既有公路的施工过程中,受浅埋、复杂水文地质因素影响,洞内开挖过程中随着围岩垂直、水平位移增加会引起地表沉陷、洞内掉块坍塌等问题。为了解决上述问题本文以HK客专某段隧道工程为例,建立了有限元模型,进行了长管棚预支护体系力学效应数值分析,并通过现场实测实证对比基本与实际情形吻合。 展开更多
关键词 隧道下穿公路 长管棚预支护 有限元模拟 协同分析 围岩变形特征
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