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设置铅芯橡胶支座隔震的渡槽非线性地震反应分析

Nonlinear seismic response analysis of aqueduct constructed with lead rubber bearing for vibration isolation

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【作者】 王博; 梁春雨; 陈淮; 徐建国;

【Author】 WANG Bo~1,LIANG Chun-yu~1,CHEN Huai~1,XU Jian-guo~2(1.Zhengzhou University,Zhengzhou 450002,Henan,China;2.Dalian University of Technology,Dalian 116024,Liaoning,China)

【机构】 郑州大学环境与水利学院; 大连理工大学土木工程学院 河南郑州450002; 河南郑州450002; 辽宁大连116024;

【摘要】 应用Wen微分型恢复力模型与双线性恢复力模型,分别模拟铅芯橡胶隔震支座的非线性滞回恢复力特性.采用时程分析的方法,对南水北调水泉沟大型渡槽进行了横向地震非线性反应分析.计算结果表明:两种方法计算所得结果相符.采用铅芯橡胶支座隔震后,渡槽上部结构运动特性得到改善:地震反应加速度减小,槽身与支座的相对位移减小.槽身近似作刚体平动;槽墩墩顶位移、加速度及墩底弯矩、剪力减小.研究表明设置铅芯橡胶支座对渡槽的横向地震起到了明显的控制作用,计算结果对渡槽减隔震设计有一定的参考价值.

【Abstract】 Bilinear hysteretic model and Wen hysteretic model are applied to simulate the hysteretic characteristics of LRB herein, and the nonlinear lateral seismic responses of Shuiquangou aqueduct-a large-scale aqueduct in South-to-North Water Transfer Project are analyzed with time history analysis method .The calculated results from two methods are identical, which show: the motion characteristic of the aqueduct superstructure is improved with seismic LRB, by which the seismic acceleration is decreased and the relative displacement between the bearing and the aqueduct body is reduced as well. The aqueduct body moves like a rigid body, while the top displacement with the acceleration of the pier and the bottom shearing force with the bending moment of the pier are reduced at the same time. The study shows that LRB is effective in controlling the lateral seismic responses of the aqueduct, which can be taken as a useful reference for the seismic design of the aqueducts concerned.

【基金】 河南省高校杰出科研人才创新工程(2003KYCX011 );河南省科技攻关资助项目(0224370025).
  • 【文献出处】 水利水电技术 ,Water Resources and Hydropower Engineering , 编辑部邮箱 ,2005年03期
  • 【分类号】TV672.3;TV312
  • 【被引频次】11
  • 【下载频次】188
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