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大跨度铁路桥梁车桥空间耦合振动研究 被引量:11
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作者 许慰平 程庆国 《中国铁道科学》 EI CAS CSCD 北大核心 1989年第2期12-26,共15页
本文系统地研究了铁路桥梁的车桥空间耦合振动问题。在详细讨论并建立桥梁、车辆、轨道以及车桥相互作用模型的基础上,提出了以轨道不平顺作为激励源的车桥空间动力响应数值计算方法。其主要特点为:(1) 结合大跨度铁路桥梁结构的特点,... 本文系统地研究了铁路桥梁的车桥空间耦合振动问题。在详细讨论并建立桥梁、车辆、轨道以及车桥相互作用模型的基础上,提出了以轨道不平顺作为激励源的车桥空间动力响应数值计算方法。其主要特点为:(1) 结合大跨度铁路桥梁结构的特点,建立了合理的有限元空间动力分析模型。(2) 提出了适合我国铁路主型货车——C_(62)型货车的空间车辆动力模型,其特点是考虑因素比较周全(共具有27个自由度),轮轨关系以及转向架构架的弹性变形描述比较完善,因此能更切合实际地反映车辆振动特性。对照表明,在不平顺路面上动力响应的计算结果与实测结果基本吻合。本模型的建立使得车桥响应研究中的一个重要问题——车辆在振动桥面上的运行安全度(如脱轨问题)研究成为可能。(3)针对桥梁振动引起的桥面上轨道的变位,提出了轨道二次不平顺的概念,并由此建立了车辆与桥梁之间的相互作用关系。(4) 采用二次滤波法求得轨道原有不平顺的数值模拟。(5) 根据所建立的车桥相互作用模型,提出了一个新的车桥动力方程迭代去耦解法,可以比原有方法大大节省计算机时,从而使得在小型计算机或微型计算机上实现整列车通过太跨度桥梁的全过程的仿真计算成为可能。根据实际桥梁的仿真结果,本文研究了不同车速、不同轨面不平顺下的车桥耦合动力特性、机车与列车过桥引起的响应差别以及轨面二次不平顺对车辆系统的影响。 展开更多
关键词 铁路桥 车桥空间耦合 振动
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A co-simulation method for the train-track-bridge interaction analysis under earthquake using Simpack and OpenSees 被引量:5
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作者 TANG Jian-yuan GUO Wei +2 位作者 WANG Yang LI Jun-long ZENG Zhe-feng 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第8期2791-2806,共16页
Under high-level earthquakes,bridge piers and bearings are prone to be damaged and the elastoplastic state of bridge structural components is easily accessible in the train-track-bridge interaction(TTBI)system.Conside... Under high-level earthquakes,bridge piers and bearings are prone to be damaged and the elastoplastic state of bridge structural components is easily accessible in the train-track-bridge interaction(TTBI)system.Considering the complexity and structural non-linearity of the TTBI system under earthquakes,a single software is not adequate for the coupling analysis.Therefore,in this paper,an interactive method for the TTBI system is proposed by combining the multi-body dynamics software Simpack and the seismic simulation software OpenSees based on the Client-Server architecture,which takes full advantages of the powerful wheel-track contact analysis capabilities of Simpack and the sophisticated nonlinear analysis capabilities of OpenSees.Based on the proposed Simpack and OpenSees co-simulating train-track-bridge(SOTTB)method,a single-span bridge analysis under the earthquake was conducted and the accuracy of co-simulation method was verified by comparing it with results of the finite element model.Finally,the TTBI model is built utilizing the SOTTB method to further discuss the running safety of HST on multi-span simply supported bridges under earthquakes.The results show that the SOTTB method has the advantages of usability,high versatility and accuracy which can be further used to study the running safety of HST under earthquakes with high intensities. 展开更多
关键词 train-track-bridge system CO-SIMULATION SOTTB CLIENT-SERVER running safety
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Response of train-bridge system under intensive seismic excitation by random vibration method 被引量:4
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作者 WU Zhao-zhi ZHANG Nan 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第8期2467-2484,共18页
Earthquake is a kind of sudden and destructive random excitation in nature.It is significant to determine the probability distribution characteristics of the corresponding dynamic indicators to ensure the safety and t... Earthquake is a kind of sudden and destructive random excitation in nature.It is significant to determine the probability distribution characteristics of the corresponding dynamic indicators to ensure the safety and the stability of structures when the intensive seismic excitation,the intensity of which is larger than 7,acts in train-bridge system.Firstly,the motion equations of a two-dimensional train-bridge system under the vertical random excitation of track irregularity and the vertical seismic acceleration are established,where the train subsystem is composed of 8 mutually independent vehicle elements with 48 degrees of freedom,while the single-span simple supported bridge subsystem is composed of 102D beam elements with 20 degrees of freedom on beam and 2 large mass degrees of freedom at the support.Secondly,Monte Carlo method and pseudo excitation method are adopted to analyze the statistical parameters of the system.The power spectrum density of random excitation is used to define a series of non-stationary pseudo excitation in pseudo excitation method and the trigonometric series of random vibration history samples in Monte Carlo method,respectively solved by precise integral method and Newmark-βmethod through the inter-system iterative procedure.Finally,the results are compared with the case under the weak seismic excitation,and show that the samples of vertical acceleration response of bridge and the offload factor of train obeys the normal distribution.In a high probability,the intensive earthquakes pose a greater threat to the safety and stability of bridges and trains than the weak ones. 展开更多
关键词 random vibration method intensive seismic excitation train-bridge system probability distribution inter system iteration precise integral method
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