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穿活动断裂带隧道抗错动易损性分析方法 被引量:3
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作者 禹海涛 许桦霖 卫一博 《岩土工程学报》 EI CAS CSCD 北大核心 2024年第10期2060-2068,共9页
活动断层错动作用是导致穿断层隧道结构破坏的主要因素,因此评估穿断层隧道结构的抗错动性能对于隧道抗震设计至关重要,然而目前研究尚缺乏针对穿断裂带隧道结构抗错动性能的评估方法。为此,提出了一种面向穿活动断裂带隧道结构抗错动... 活动断层错动作用是导致穿断层隧道结构破坏的主要因素,因此评估穿断层隧道结构的抗错动性能对于隧道抗震设计至关重要,然而目前研究尚缺乏针对穿断裂带隧道结构抗错动性能的评估方法。为此,提出了一种面向穿活动断裂带隧道结构抗错动性能评估的易损性分析方法。首先,基于概率断层位错危险分析(PFDHA)推导隧址区断层位错超越概率计算公式;其次,建立围岩-断层-隧道相互作用体系的有限元分析模型,并选定易损性分析指标,采用拟静力弹塑性分析方法得到隧道损伤与断层位错量之间的量化关系;最后采用隧址区断层位错超越概率计算公式计算出任意给定地震动水准条件下穿活动断裂带隧道结构的抗错动易损性。以某穿活动走滑断层隧道为例,依据所建立的易损性评估方法开展影响因素分析,探究了断层倾角对隧道结构抗错动性能的影响规律,结果表明:断层倾角越小,穿断层处隧道结构的易损性越小,且上盘侧隧道衬砌易损性显著高于下盘;隧道易损性对5~8级矩震级的变化更为敏感;隧道选线沿着近破裂带端部穿越可显著降低隧道结构的受损概率。该方法可以定量描述穿断层隧道在给定地震动强度下的易损性程度,可为穿活动断裂带隧道结构抗震设计与抗错动性能评估提供科学依据和分析手段。 展开更多
关键词 穿断层隧道 活动断裂带 易损性 地震响应 pfdha
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Performance-based three-level fortification goal and its application in anti-dislocation countermeasures:A case study of Shantou Submarine tunnel 被引量:2
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作者 Tianqiang Wang Ping Geng +2 位作者 Guoguo Liu Changjian Chen Wenqi Gu 《Underground Space》 SCIE EI CSCD 2023年第5期251-270,共20页
The dislocation momentum is the design basis for anti-dislocation to tunnel when a tunnel crosses an active fault.The influence of different dislocation levels on tunnel performances is not clear.Thus,based on seismic... The dislocation momentum is the design basis for anti-dislocation to tunnel when a tunnel crosses an active fault.The influence of different dislocation levels on tunnel performances is not clear.Thus,based on seismic activity parameters at the site of interest and probability of fault dislocation,probability fault displacement hazard analysis(PFDHA)methodology was introduced in this paper to ascertain the fault dislocation level under different exceeding probabilities(63%,10%,and 2%–3%).Then,based on the definition of different ground motion strength and fortification goals of the tunnel,a three-level fortification goal with different performance requirements of the tunnel was proposed.The first attempt to use the proposed indexes including the maximum dislocation of the tunnel and maximum relative deformation of the tunnel was tried to evaluate deformation and failure states with an experimental approach.Subsequently,the feasibility of the three-level fortification goal was further investigated according to the self-defined qualitative description and quantitative indexes in the segmental design and sectional expansion tunnels comprehensively.The results show that the fault dislocations relying on PFDHA at the site of the Shantou Submarine Tunnel are firstly ascertained as 0.04,1.8,and 2.4 m respectively.Taking the fault dislocation as model input values into account,the dislocation mechanism of the tunnel under the three levels was revealed.More importantly,judging from the dislocation performance requirements of the three-level fortification goal,the tunnel deformation and failure states are mitigated by adopting the countermeasures.The sectional expansion design can well meet the requirements without the restriction of a strong earthquake,while the effectiveness of the segmental tunnel can be proved under frequently occurred and fortification earthquake.The final research results are expected to provide a new fortification goal for anti-dislocation hazard evaluation on expansion design in high-intensity seismic regions and segmental design in slight and moderate-intensity seismic regions. 展开更多
关键词 Fault-crossing tunnel pfdha methodology Three-level fortification goal Failure modes Anti-dislocation countermeasures
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