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深埋复合式衬砌隧道二衬分担比研究 被引量:13
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作者 周建 杨新安 +1 位作者 蔡键 杨帆 《公路交通科技》 CAS CSCD 北大核心 2020年第5期92-99,共8页
为研究深埋复合式衬砌隧道二衬分担比,首先,介绍了基于"叠合梁"理论的初支与二衬荷载传递机理;然后,统计了31座隧道120个断面围岩与初支及初支与二衬间接触压力的监测数据,研究了围岩压力与围岩级别、埋深等参数的相关性,系... 为研究深埋复合式衬砌隧道二衬分担比,首先,介绍了基于"叠合梁"理论的初支与二衬荷载传递机理;然后,统计了31座隧道120个断面围岩与初支及初支与二衬间接触压力的监测数据,研究了围岩压力与围岩级别、埋深等参数的相关性,系统分析了经验公式计算的深埋隧道围岩压力与实测值的差异性;最后,将运用修正的"叠合梁"理论计算出的不同围岩级别二衬分担比与实测值对比分析,并讨论了"叠合梁"理论计算二衬分担比的适用性。结果表明:深埋复合式衬砌隧道围岩压力总体随着围岩级别或隧道埋深的增加而增加,而与隧道跨度﹑高度无明显联系;经验公式计算值与实测值接近程度从优到劣依次为:普氏理论、《公路隧道设计细则》(2010)、太沙基公式;《公路隧道设计细则》(2010)适用于埋深小于800 m的围岩压力预测;Ⅲ,IV,V和Ⅵ级围岩的二衬分担比多集中于20%~30%,30%~45%,40%~70%,隧道地应力高、围岩条件差以及初支未及时施作等因素可能是少数断面二衬分担比过高的原因;"叠合梁"理论计算的二衬分担比值受支护材料物理力学参数的影响甚微,而受初支厚度与二衬厚度的影响颇大,"叠合梁"理论不适用于IV级及以下围岩二衬分担比的计算,V和Ⅵ级围岩二衬分担比可按"叠合梁"理论计算值的70%预测。 展开更多
关键词 隧道工程 二衬分担比 统计监测数据 复合式衬砌 围岩压力
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Load laws of composite lining in mountain tunnel model tests and numerical simulation validation 被引量:1
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作者 ZHOU Jian yang xin-an CHU Zheng 《Journal of Mountain Science》 SCIE CSCD 2023年第7期2041-2057,共17页
Currently,model tests are increasingly being used to simulate the construction of mountain tunnels,but the support structure of the model tests does not show the composite lining,and the force laws of the composite li... Currently,model tests are increasingly being used to simulate the construction of mountain tunnels,but the support structure of the model tests does not show the composite lining,and the force laws of the composite lining are not yet clear.In this research,the force variation of composite lining under three cases in model tests of deep-buried tunnels were carried out with the surrounding rock grade and installation time as the variation factors.The test results reveal that:(1)The suitable method to reduce the contact load between the secondary lining and primary support is to enhance the primary support in the soft and weak surrounding rock.Correspondingly,for ClassⅢsurrounding rock and better quality of surrounding rock,the primary support can lag behind the excavation face a certain distance.(2)The axial forces of the bolts tend to rise with concentration of 0.4 kN-0.7 kN after the secondary lining was installed.(3)With or without two to three excavation cycles delayed,the load sharing ratio of the secondary lining of the Class III surrounding rock is less than 10%.Finally,the numerical simulation verifies the feasibility of the model tests. 展开更多
关键词 Mountain tunnel Composite lining Surrounding rock grade Force variation Primary support Secondary lining
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