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强震崩塌岩体冲击桥墩动力响应研究 被引量:11
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作者 裴向军 黄润秋 李世贵 《岩石力学与工程学报》 EI CAS CSCD 北大核心 2011年第S2期3995-4001,共7页
雅(安)—泸(沽)高速公路YK136+097西冲特大桥16#桥墩岩质边坡发育的陡倾坡外结构面与风化卸荷裂隙构成倒悬危岩体。该区属高地震烈度区(VIII度),运用非连续变形数值分析(DDA)方法,对危岩体在强震作用下的失稳模式、破坏规模、运动轨迹... 雅(安)—泸(沽)高速公路YK136+097西冲特大桥16#桥墩岩质边坡发育的陡倾坡外结构面与风化卸荷裂隙构成倒悬危岩体。该区属高地震烈度区(VIII度),运用非连续变形数值分析(DDA)方法,对危岩体在强震作用下的失稳模式、破坏规模、运动轨迹及对桥墩冲击的动力响应进行模拟研究。演进过程如下:强地震力作用产生放大效应,使突出山梁部位岩体首先震裂、抛掷,接续为中下部岩体沿卸荷拉裂面溃崩解体,滑体进而沿主控结构面整体滑塌、冲击桥墩。统计分析坡体及桥墩监测点位移大小和变化特征,表明桥墩上各监测点位移与地震节律呈正相关,在失稳岩块撞击及堆积岩体推挤作用下,系梁与桥墩顶端变形及永久位移较墩身其他位置大,这一过程与"5·12"汶川地震滚石冲击桥梁破坏现象吻合。在对坡体及桥墩变形量化分析基础上,依据强震触发崩塌特征提出了桥梁边坡危岩防治方案。 展开更多
关键词 工程地质 雅泸高速危岩体边坡 震裂与溃滑 冲击桥墩 波动中心轴 永久位移
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Dynamic response analysis of ship-bridge collisions experiment 被引量:7
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作者 Jian GUO Jing-xuan HE 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2020年第7期525-534,共10页
Over the past decades, there has been continual construction of sea-crossing bridges as the technology of transportation improves. The probability of bridge pier being subjected to more vehicular impact is also growin... Over the past decades, there has been continual construction of sea-crossing bridges as the technology of transportation improves. The probability of bridge pier being subjected to more vehicular impact is also growing. This study performed scale model tests and analyzed a collision mechanism considering the non-navigable span of a sea-crossing bridge in East China Sea as an engineering background. Comparing the test results with the finite element calculations, the dynamic response of the sample bridge and local damages of the fragile components under impact force were evaluated. Subsequently, the time-frequency characteristics of the vibration signal were analyzed based on wavelet packet analysis, and the multi-resolution characteristics as well as energy distribution of the vibration signal were discussed. It was observed that the impact energy transferred from ship to pier during the period of collision distributed different frequency bands with varying characteristics. The main frequency band(0–62.5 Hz) contains more than 75% of the vibration energy. The analysis can provide a basis for structural damage identification after the collision and anti-collision design of bridges. 展开更多
关键词 Scaled model test Ship collisions Impact force Wavelet packet analysis Energy distribution
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