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1高陡边坡整体与局部失稳的强度折减及安全度判别分析显示文摘为了实现从整体和局部都能较为准确地分析弧状高陡边坡安全稳定性,指导露天采矿高陡边坡设计,采用有限差分强度折减法分析边坡稳定性,获得边坡整体的安全系数。对每个计算单元引入安全度进行分析,获得边坡局部安全系数;将最大节点位移时步曲线收敛性作为边坡失稳的判定准则,弥补了采用其他准则时由于人为指定容差而引起的较大误差;以某铁矿西南边坡为例,运用FISH语言编制强度折减法、失稳准则和安全度相关程序进行计算。研究表明:有限差分强度折减法、基于最大节点位移时步曲线收敛性的失稳准则和计算单元安全度相结合的边坡稳定性分析方法适合于弧状边坡稳定性分析,研究为弧状高陡边坡设计提出了新的思路。房智恒 王李管 彭南良 蒋权 2015重庆大学学报(自然科学版)2015,38,6:8
2Mechanical responses of anchoring structure under triaxial cyclic loading显示文摘Dynamic load on anchoring structures(AS)within deep roadways can result in cumulative damage and failure.This study develops an experimental device designed to test AS under triaxial loads.The device enables the investigation of the mechanical response,failure mode,instability assessment criteria,and anchorage effect of AS subjected to combined cyclic dynamic-static triaxial stress paths.The results show that the peak bearing strength is positively correlated with the anchoring matrix strength,anchorage length,and edgewise compressive strength.The bearing capacity decreases significantly when the anchorage direction is severely inclined.The free face failure modes are typically transverse cracking,concave fracturing,V-shaped slipping and detachment,and spallation detachment.Besides,when the anchoring matrix strength and the anchorage length decrease while the edgewise compressive strength,loading rate,and anchorage inclination angle increase,the failure intensity rises.Instability is determined by a negative tangent modulus of the displacement-strength curve or the continued deformation increase against the general downward trend.Under cyclic loads,the driving force that breaks the rock mass along the normal vector and the rigidity of the AS are the two factors that determine roadway stability.Finally,a control measure for surrounding rock stability is proposed to reduce the internal driving force via a pressure relief method and improve the rigidity of the AS by full-length anchorage and grouting modification.Peng Wang Nong Zhang Qun Wei Xingliang Xu Guangzhen Cui Aoran Li Sen Yang Jiaguang Kan 2024Journal of Rock Mechanics and Geotechnical Engineering2024,16,2:0
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