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基于有载频率的简支梁桥自振频率计算方法 被引量:15
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作者 谭国金 宫亚峰 +2 位作者 程永春 刘寒冰 王龙林 《振动工程学报》 EI CSCD 北大核心 2011年第1期31-35,共5页
由于车辆的存在,在桥梁的动力试验中,测试到的桥梁频率实际上是以桥梁振动为主要振动形式的车-桥耦合系统的振动频率(工程上称为有载频率),而非桥梁自身的固有频率。基于车-桥系统的耦合振动模型和模态分析技术,提出了多个车辆作用下的... 由于车辆的存在,在桥梁的动力试验中,测试到的桥梁频率实际上是以桥梁振动为主要振动形式的车-桥耦合系统的振动频率(工程上称为有载频率),而非桥梁自身的固有频率。基于车-桥系统的耦合振动模型和模态分析技术,提出了多个车辆作用下的桥梁有载频率计算方法。在中小跨径的公路桥梁的动态检测中,往往采用单个车辆对桥梁进行激振。对此推导出了单个车辆作用下的桥梁有载频率的简便计算公式。基于单个车辆作用下的桥梁有载频率计算公式,进一步得到了基于有载频率计算桥梁自振频率的解析表达式。最后以某钢筋混凝土梁为例,采用有限元方法计算出的桥梁有载频率为基础数据,充分验证了方法的可行性和有效性。 展开更多
关键词 桥梁工程 桥梁自振频率 桥梁有载频率 车-桥耦合系统 模态分析方法
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Influence of mortar gap on natural vibration frequencies of high-speed railway track-bridge system 被引量:4
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作者 LIU Shao-hui JIANG Li-zhong +1 位作者 ZHOU Wang-bao FENG Yu-lin 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第8期2807-2819,共13页
Based on Hamilton’s principle, the differential equations of free vibration of track-bridge systems with mortar gap are derived. Hence, a method for calculating the natural frequencies of track-bridge systems is prop... Based on Hamilton’s principle, the differential equations of free vibration of track-bridge systems with mortar gap are derived. Hence, a method for calculating the natural frequencies of track-bridge systems is proposed. The influence of the flexural stiffness of the track-bridge system, the vertical and longitudinal stiffness of the mortar layer,gap position and gap length on the natural frequencies of a track-bridge system is discussed. The results show that the natural frequencies of the track-bridge system are more sensitive to the change of the flexural stiffness of the bridge layer. The change of the longitudinal stiffness of the mortar layer and gap position has no obvious effect on the trackbridge system’s natural frequencies, while the interlayer vertical stiffness has a larger impact. The gap length has a more significant effect on the 4th-5th order natural frequencies of the track-bridge system. The range of the natural frequencies that are affected by the gap widens as the gap length increases. 展开更多
关键词 shear deformation track-bridge system mortar gap vibration frequencies
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