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基于ANN-ES综放回采巷道锚杆支护设计 被引量:2
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作者 谢广祥 查文华 《煤炭工程》 北大核心 2003年第6期60-62,共3页
针对锚杆支护设计过程中各种影响因素复杂性特点 ,提出了将神经网络和专家系统相结合的方法用于综放回采巷道锚杆支护设计 ,并建立了相应的ANN -ES智能决策系统。应用结果表明该系统的设计是可行和合理的。
关键词 神经网络 专家系统 综放回采巷道 锚杆支护设计
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有限差分数值模拟方法在破碎顶板煤巷锚杆支护设计中的应用 被引量:6
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作者 王泽进 《煤矿开采》 2000年第3期29-31,共3页
介绍了应用有限差分数值模拟进行煤巷锚杆支护设计的方法 ,并通过现场的成功应用 ,验证了该方法的合理性与科学性 ,指出在应用中应注意的几个问题。
关键词 有限差分 破碎顶板 锚杆支护设计 数值模拟 巷道
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煤巷预应力锚杆支护设计方法及其应用研究 被引量:2
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作者 汪永茂 朱成义 +1 位作者 王健 吴邦全 《煤炭工程》 北大核心 2002年第4期33-36,共4页
本文分析论述了煤巷预应力锚杆支护摩擦构造梁作用机理 ,提出煤巷预应力锚杆支护设计新方法 ,推导出锚杆预应力的计算公式 ,并由预应力值来选定锚固力、锚杆直径 ;介绍了井下实际应用所取得良好的支护效果和技术经济效益 ,同时证实了该... 本文分析论述了煤巷预应力锚杆支护摩擦构造梁作用机理 ,提出煤巷预应力锚杆支护设计新方法 ,推导出锚杆预应力的计算公式 ,并由预应力值来选定锚固力、锚杆直径 ;介绍了井下实际应用所取得良好的支护效果和技术经济效益 ,同时证实了该设计的合理性和科学性 ;采用高预应力 ,大锚固力 ,粗直径锚杆比增加锚杆长度、降低密度更为经济合理 ,它可以阻止顶板离层 ,真正起到支护的作用 。 展开更多
关键词 预应力锚杆支护 煤巷 摩擦构造梁 锚杆支护设计 锚固力 围岩
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Design method of high prestressed support for shallow-buried large-span caverns
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作者 JIANG Bei WEI Hua-yong +3 位作者 WANG Qi WANG Ming-zi YIN Chen ZHANG Yan-bo 《Journal of Central South University》 2025年第3期1099-1116,共18页
The surrounding rock is prone to large-scale loosening and failure after the excavation of shallow large-span caverns because of the thin overlying strata and large cross-section span.The rational design of bolt suppo... The surrounding rock is prone to large-scale loosening and failure after the excavation of shallow large-span caverns because of the thin overlying strata and large cross-section span.The rational design of bolt support is very important to the safety control of surrounding rock as a common support means.The control mechanism and design method of bolt support for shallow-buried large-span caverns is carried out.The calculation method of bolt prestress and length based on arched failure and collapsed failure mode is established.The influence mechanism of different influencing factors on the bolt prestress and length is clarified.At the same time,the constant resistance energy-absorbing bolt with high strength and high toughness is developed,and the comparative test of mechanical properties is carried out.On this basis,the design method of high prestressed bolt support for shallow-buried large-span caverns is put forward,and the field test is carried out in Qingdao metro station in China.The monitoring results show that the maximum roof settlement is 6.8 mm after the new design method is adopted,and the effective control of the shallow-buried large-span caverns is realized.The research results can provide theoretical and technical support for the safety control of shallow-buried large-span caverns. 展开更多
关键词 Hoek-Brown strength criterion shallow-buried large-span caverns limit analysis upper bound method high prestress bolt support design method
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Failure mechanism of bolting support and high-strength bolt-grouting technology for deep and soft surrounding rock with high stress 被引量:18
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作者 李术才 王洪涛 +5 位作者 王琦 江贝 王富奇 郭念波 刘文江 任尧喜 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第2期440-448,共9页
In deep underground mining, the surrounding rocks are very soft with high stress. Their deformation and destruction are serious, and frequent failures occur on the bolt support. The failure mechanism of bolt support i... In deep underground mining, the surrounding rocks are very soft with high stress. Their deformation and destruction are serious, and frequent failures occur on the bolt support. The failure mechanism of bolt support is proposed to solve these problems. A calculation theory is established on the bond strength of the interface between the anchoring agent and surrounding rocks. An analysis is made on the influence law of different mechanical parameters of surrounding rocks on the interfacial bond strength. Based on the research, a new high-strength bolt-grouting technology is developed and applied on site. Besides, some helpful engineering suggestions and measures are proposed. The research shows that the serious deformation and failure, and the lower bond strength are the major factors causing frequent failures of bolt support. So, the bolt could not give full play to its supporting potential. It is also shown that as the integrity, strength, interface dilatancy and stress of surrounding rocks are improved, the bond strength will increase. So, the anchoring force on surrounding rocks can be effectively improved by employing an anchoring agent with high sand content, mechanical anchoring means, or grouting reinforcement. The new technology has advantages in a high strength, imposing pre-tightening force, and giving full play to the bolt supporting potential. Hence, it can improve the control effect on surrounding rocks. All these could be helpful references for the design of bolt support in deep underground mines. 展开更多
关键词 high stress soft rock bolting support interface dilation failure mechanism high strength bolt-grouting technology
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