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Unsymmetrical load effect of geologically inclined bedding strata on tunnels of passenger dedicated lines 被引量:6
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作者 Benguo HE Zhiqiang ZHANG Yu CHEN 《Journal of Modern Transportation》 2012年第1期24-30,共7页
In order to study the unsymmetrical load effect in geological bedding strata for the Muzhailing tunnel on the Lanzhou-Chongqing passenger dedicated line in China, we investigated the deformation, mechanical response a... In order to study the unsymmetrical load effect in geological bedding strata for the Muzhailing tunnel on the Lanzhou-Chongqing passenger dedicated line in China, we investigated the deformation, mechanical response and pressure of the surrounding rock and the mechanical characteristics of bolts of the tunnel. The results suggest that open zones appear at arch and invert where joints open up, when layered stratum is horizontal, or when the dip angle of in- clined bedding is small. Open zones occur perpendicular to a joint. The failure mode is bending disjunction at the arch tain shear displacement, and lead to obvious geological bedding unsymmetrical load. The failure mode is shear damage. For the joint dip angle in the range of 75-90°, the failure mode is flexural crushing at the wall and vertical shear rup- ture above the arch. The restraining effect of two sides weakens for vertical dip. On the whole, shear failure instabilitytrend would occur and the tunnel collapses evenly. When the angle between the bolt and structure plane is greater than 23°, bolts can enhance the shearing stiffness of joint plane. Unfortunately, in the general purpose graph of tunnel for 250 km/h of passenger dedicated lines, the bolts have equal length and spacing. The rationale behind this is worthy offurther study. For inclined bedding, the surrounding rock pressure at the left wall is more than that at the right wall. In addition, lining is likely to be damaged at left shoulder and side wall. With the dip angle increasing, the unsymmetrical load gradually achieves symmetry. Asymmetry design for support is recommended to reduce the unsymmetrical load on lining disturbed by excavation. 展开更多
关键词 geological bedding strata unsymmetrical load tunnel bolt support surrounding rock pressure stability
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地形因素及围岩类别对偏压隧道的影响效应分析 被引量:27
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作者 刘小军 张永兴 《西安建筑科技大学学报(自然科学版)》 CSCD 北大核心 2010年第2期205-210,共6页
针对地形偏压隧道,综合考虑了围岩类别、横坡坡度、侧覆土厚和最大埋深等因素,利用正交试验法进行试验方案的优选,共选出25种正交试验方案进行弹塑性有限元数值模拟试验,然后将计算结果与现场实测值进行对比发现两者在规律上一致,最后... 针对地形偏压隧道,综合考虑了围岩类别、横坡坡度、侧覆土厚和最大埋深等因素,利用正交试验法进行试验方案的优选,共选出25种正交试验方案进行弹塑性有限元数值模拟试验,然后将计算结果与现场实测值进行对比发现两者在规律上一致,最后进行直观分析和极差分析.通过对数值结果分析可知围岩类别的差异对地形偏压隧道的变形影响最为显著,其次为最大埋深.拱顶、仰拱以及拱腰的变形受侧覆土厚的变化影响较横坡坡度大,而拱脚则相反;结果也表明地形因素的变化对隧道靠近山体侧变形的影响略大于靠近沟谷侧的影响.同时发现侧覆土厚从5~35 m变化时偏压程度逐渐减弱,超过20 m后可认为偏压作用基本不存在;而对于横坡坡度而言,从20°~60°偏压程度随其逐渐增大而有所起伏,但总趋势增加;最大埋深达到30 m之后,两侧应力差基本不变化甚至有略微下降的趋势,说明随着埋深的增大,偏压程度基本稳定. 展开更多
关键词 地形因素 围岩类别 偏压隧道 正交试验法 数值模拟
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