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钓鱼城遗址始关门破坏机制研究与FLAC3D地震动力响应模拟

Study of damage mechanism and FLAC3D simulation of the seismic dynamic response of Shiguan gate in Diaoyucheng ruins

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【作者】 刘积魁方云刘智刘建辉王晓东

【Author】 LIU Ji-kui1,FANG Yun1,LIU Zhi2,LIU Jian-hui3,WANG Xiao-dong1(1.Faculty of Engineering,China University of Geoscience,Wuhan 430074,China;2.Diaoyucheng Administration Bureau of Hechuan District of Chongqing City,Chongqing 401520,China;3.Chinese Academy of Cultural Heritage,Beijing 100029,China)

【机构】 中国地质大学(武汉)工程学院重庆市合川区钓鱼城管理局中国文化遗产研究院

【摘要】 古遗址赋存于岩土体之中,是岩土体的一部分,故尝试采用岩土工程分析手段对其破坏机制进行研究。在"5.12"汶川地震中,重庆合川钓鱼城古战场遗址的始关门出现了局部开裂、错位等变形破坏现象。地质勘察表明,始关门赋存于滑坡、裂隙等复杂地质环境中,故抽取了始关门的地质模型,采用有限差分软件FLAC3D对其进行了三维地震动力响应模拟,分析其变形破坏机制。结果表明,始关门应力集中明显,并在地震波作用下有明显位移出现。始关门破坏是各种地质因素综合作用的结果。"5.12"汶川地震是诱导因素,滑坡、陡崖裂隙等地质结构是主要原因,古城门自身强度减小是发生破坏的内因。模拟结果为始关门修复设计提供了可靠的科学根据,具有一定的研究意义和推广价值。

【Abstract】 The ancient ruins,Shiguan gate attached to rock and soil mass,is a part of rock and soil mass;so geotechnical analysis is used to study of its damage mechanism.In the "5.12" Wenchuan earthquake,local cracking and dislocation phenomena occurred in Shiguan gate of Diaoyucheng ancient battlefield ruins in Hechuan of Chongqing.Geological survey shows that the Shiguan gate is under complicated geological conditions like landslides,cracks etc.,so geological model of Shiguan gate is sampled and the fast Lagrangian analysis of continua in 3D(FLAC3D) is used to make 3D simulation of the seismic dynamic response and analyze damage mechanism of Shiguan gate.Simulation results show that the stress concentration obviously occurs in Shiguan gate and displacements appear obviously under the conditions of seismic waves.The damage of Shiguan gate results from various geological factors."5.12" Wenchuan earthquake is induced factor,geological structure like landslides,cracks etc.,is the main reason;the reduction of its own intensity is the internal reason.The reliable scientific basis of repair and design of Shiguan gate is provided by the the simulation results.It has certain study significance and promotion value.

【基金】 国家自然科学基金项目(No.40972183)国家自然科学基金项目(No.40972186);国家科技支撑计划项目(No.2009BAK53B03)
  • 【文献出处】 岩土力学 ,Rock and Soil Mechanics , 编辑部邮箱 ,2011年04期
  • 【分类号】U441.5
  • 【被引频次】5
  • 【下载频次】317
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