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1.
车辆-轨道系统垂向随机振动的辛方法分析   总被引:2,自引:0,他引:2  
吕峰  林家浩  张亚辉 《力学学报》2008,40(3):381-387
将轨道视为无限长的周期结构,建立车辆轨道垂向耦合模型. 使用虚拟激励法将随机的轨道不平顺激励转化为确定性的简谐激励,再用辛数学方法求解轨道结构的频率响应特性和耦合系统的响应功率谱. 整个计算模型只有26个自由度,求解过程快速而精确.数值算例中,将该方法与常规有限元方法进行了比较,验证了方法的高效性和正确性,讨论了车辆速度对系统随机响应的影响.   相似文献   

2.
轨道随机不平顺作为引起车辆-轨道-桥梁耦合系统振动的最重要的激励源,对列车过桥平稳性有着至关重要的影响.建立车辆-轨道-桥梁耦合垂向振动模型,采用虚拟激励法,计算随机不平顺激励下车辆运行的平稳性以及轨道和桥梁结构的振动特性,避免了繁复的时频转换和复杂的数值积分.数值分析了不同速度下列车过桥的平稳性和列车对不平顺波长的敏感范围.经过分析得到,列车运行速度越大,过桥平稳性指标越大,即舒适性越差;而且影响列车平稳性的不平顺波长越长,其影响范围越大.  相似文献   

3.
通过无记忆非线性平移得到非高斯轨道高低不平顺,并以此为激励作用于列车-轨道-桥梁耦合系统结构,对比分析了高斯和非高斯轨道不平顺对列车、轨道和桥梁动力学性能的影响。结果表明:模拟的非高斯轨道不平顺相关函数和目标相关函数相互吻合;考虑四种高斯轨道不平顺激励下,车体的垂向振动加速度响应出现了紊乱现象,中国干线轨道高斯不平顺对车体的垂向振动加速度响应影响较其他3种不平顺要小,但对钢轨的垂向振动加速度响应影响比其他3种不平顺要大;美国六级轨道、德国高低干扰轨道非高斯不平顺激励下的耦合结构振动加速度响应均在不同程度上要大于其高斯轨道不平顺,但中国干线轨道不平顺对钢轨和桥梁的振动加速度响应却出现相反的影响。  相似文献   

4.
基于结构的对称性提出了用于三维车辆轨道耦合系统高效随机动力响应分析的虚拟激励方法.车辆采用刚体动力学模型,轨道结构利用三维轨道广义单元建模,车辆与轨道通过线性轮轨关系耦合.采用虚拟激励法将高低、方向和水平三类轨道不平顺转化为一系列筒谐的虚拟不平顺;考虑车辆及轨道结构的对称性,分别推导了耦合系统的对称和反对称凝聚矩阵,提出了用于车辆轨道耦合系统动力响应计算的自由度凝聚方法,将耦合系统的自由度缩减至原来的一半以下,并在此基础上实现了耦合系统随机振动的高效分析.数值算例将本文方法与传统有限元方法进行对比,验证了本文方法的正确性和有效性.  相似文献   

5.
根据车辆左右轮的互功率谱密度和相干函数,推导了左右轮桥面不平顺特性中对应相位角的相干关系,提出了采用相位角相干生成车辆各轮相干桥面不平顺激励的方法,并通过数值算例验证了该生成方法的可靠性.工程应用结果表明,车辆各轮相干桥面不平顺激励增大了桥梁、车辆竖向和车辆俯仰角的振动响应,但降低了车辆侧倾角的振动响应;不同相干函数模型对桥梁振动响应影响较小,但对车辆振动响应影响较大;同一相干函数模型,桥梁振动响应随着相干强度的增大而增大,但车辆振动响应随着相干强度的增大而减小;研究桥面不平顺随机激励对车桥耦合系统振动响应的影响有必要考虑车辆各轮的相干关系.  相似文献   

6.
张志俊  张迅 《应用力学学报》2020,(2):851-859,I0027,I0028
建立频域内的车辆-轨道-桥梁垂向耦合动力学模型,包括1/8车辆模型和CRTS-Ⅱ型板式无砟轨道-桥梁-支座模型两部分,以快速求解100Hz以内的桥梁支座动反力。将CRTS-Ⅱ型板式无砟轨道-桥梁-支座模型简化为4层叠合梁,采用Euler梁模拟钢轨、轨道板、底座板和箱梁,采用具有复刚度的弹簧模拟扣件、CA砂浆层、滑动层和桥梁支座。以32m简支桥梁为研究对象,分析了支座动反力的频谱特性,并讨论了轨道不平顺、扣件刚度和支座刚度对支座动反力的影响规律。结果表明:支座动反力在车轮-轨道系统的固有频率附近出现峰值;轨道不平顺幅值在很大程度上决定了支座动反力幅值,其峰值频率点在支座动反力曲线上得以体现;扣件刚度降低可一定程度上减小轮轨力及支座反力峰值、频段幅值及峰值频率;支座刚度降低可以减小支座反力幅值,同时降低峰值频率,其主要通过改变轨道-桥梁耦合系统的频响特性实现,而轮轨力基本不受其影响。  相似文献   

7.
随机不平顺激励下磁浮车辆轨道梁动力响应   总被引:2,自引:1,他引:2  
建立了高速常导磁浮交通车辆轨道梁空间耦合模型,探讨了合理的磁浮线路功率谱形 式,利用分离迭代的数值积分方法求解了大规模非线性耦合动力方程. 利用计算结果分析了 随机不平顺对系统动力学指标影响规律,并采用功率谱密度曲线进行了谱分析,得到了高速 磁浮交通车梁耦合系统随机振动的基本规律.  相似文献   

8.
随着高速铁路的发展,列车运行速度和列车载重的不断提高,轨道结构承受的动载荷不断增大,其反复作用的结果必将导致轨道结构部件疲劳破坏更加突出,可靠性下降,并加速残余累积变形;反过来轨道结构部件的破坏,影响列车行驶的安全性和舒适性.因此,列车-轨道-路基耦合系统动力学问题越来越受到学术界的关注.采用统一模型法,建立车辆、钢轨、轨枕、道床和路基为一体的二系垂向耦合动力分析模型,利用新型显式积分法对耦合系统运动方程进行数值积分计算,分析列车速度、轨枕间距、轨道不平顺及列车重量对列车运行的品质、动位移以及轨道结构振动的影响规律.对车辆运行速度的控制以及对轨道结构设计、施工和养护提供有用的参考.  相似文献   

9.
车轨系统随机响应周期性拟稳态分析   总被引:2,自引:1,他引:1  
张有为  项盼  赵岩  林家浩 《力学学报》2012,44(6):1046-1056
提出用于三维车轨耦合系统随机动力响应高效求解的周期性拟稳态分析方法. 车辆采用三维刚体动力学模型,轨道结构利用三维轨道广义单元建模. 假定轨枕间距均匀,则列车在轨道上行驶过程中,车轨耦合系统动力学方程具有典型周期时变特征. 应用虚拟激励方法将轨道随机不平顺转化为虚拟简谐不平顺,在状态空间下运用周期系数微分方程的性质和Schur分解技巧将上述问题的求解转化为周期性拟稳态响应分析,只需通过求解系数矩阵为上三角的线性方程组即可代替以往时变系统虚拟响应求解过程中的逐步积分过程,计算效率获得较大提高. 采用该方法进行了三维车轨耦合系统的随机动力响应分析,并进行了不平顺随机载荷在车体、转向架、轮对和轨道等部件中传递机理分析,获得了一些有价值结论.   相似文献   

10.
考虑到传统的Hertz弹簧模型进行车桥耦合动力学分析存在诸多问题,本文基于简单的车桥耦合模型,导出了车桥耦合与非耦合动力学方程。考虑轨道周期和随机不平顺情况,车辆在不平顺轨道曲线上运行时,当离心力大于车辆自重时,自动确定车辆的起跳时间和起跳高度。起跳后的车辆在重力作用下,将重新回到梁上,同时对梁有一冲击作用力。文章假设了此冲击力的作用规律,并由有限元模拟确定冲击力系数。通过自编程序,对单轴行车简支梁进行了数值计算。数值分析结果表明,考虑跳车冲击力的动力模型能够更加精准地反应车桥耦合振动特征,且本模型首次给出了跳车高度。考虑轨道具有相同幅值的周期不平顺和随机不平顺时,轨道随机不平顺将导致桥梁,尤其是车辆的响应更大,舒适性更差或结构更危险,在车桥耦合动力学分析中应重点关注。  相似文献   

11.
As a vehicle passing through a track with different weld irregularities, the dynamic performance of track com- ponents is investigated in detail by using a coupled vehi- cle-track model. In the model, the vehicle is modeled as a multi-body system with 35 degrees of freedom, and a Timoshenko beam is used to model the rails which are dis- cretely supported by sleepers. In the track model, the sleepers are modeled as rigid bodies accounting for their vertical, lat- eral and rolling motions and assumed to move backward at a constant speed to simulate the vehicle running along the track at the same speed. In the study of the coupled vehicle and track dynamics, the Hertizian contact theory and the theory proposed by Shen-Hedrick-Elkins are, respectively, used to calculate normal and creep forces between the wheel and the rails. In the calculation of the normal forces, the coefficient of the normal contact stiffness is determined by transient contact condition of the wheel and rail surface. In the calcu- lation of the creepages, the lateral, roll-over motions of the rail and the fact that the relative velocity between the wheel and rail in their common normal direction is equal to zero are simultaneously taken into account. The motion equations of the vehicle and track are solved by means of an explicit integration method, in which the rail weld irregularities are modeled as local track vertical deviations described by some ideal cosine functions. The effects of the train speed, the axle load, the wavelength and depth of the irregularities, and the weld center position in a sleeper span on the wheel-rail impact loading are analyzed. The numerical results obtained are greatly useful in the tolerance design of welded rail pro- file irregularity caused by hand-grinding after rail welding and track maintenances.  相似文献   

12.
不确定车轨耦合系统辛随机振动分析   总被引:3,自引:1,他引:2  
赵岩  项盼  张有为  林家浩 《力学学报》2012,44(4):769-778
建立了轨道不平顺作用下具有不确定参数车轨耦合系统随机振动评估方法. 车辆系统采用物理坐标下多刚体系统模型,并应用高斯随机变量模拟车体、转向架和轮对一系、二系连接系统中动力学参数具有的不确定性. 采用无穷周期结构进行弹性轨道模拟,在哈密顿状态空间下建立了典型轨道子结构的状态运动方程,通过轮轨耦合关系建立了混合 物理坐标及辛模态坐标车轨耦合系统运动方程. 应用Hermite正交多项式展开得到了耦合系统动力响应相对于不确定性参数的控制方程. 由于利用轨道周期特性建模,所获得的控制方程有效地降低了方程维度. 轮轨接触处轨道不平顺载荷模拟为完全相干多分量平稳随机过程,推广和发展虚拟激励法建立了耦合系统随机振动受不确定动力学 参数影响的量化评估方法. 通过Monte Carlo数值模拟,验证了该方法在不确定参数变异很大时也能够保持较好的精度,具有一定的工程实用性.  相似文献   

13.
As it is known, track transportation can be divided into track system above and track system below. While the train is moving, the parts above and below are interacted and influenced. Therefore, in fact, the problem of track transportation is the match between the vehicle and the railway line system. In this paper, on a basis of dynamic analysis of the vehicle-subgrade model of vertical coupled system under primary suspension, utilizing track maintenance standard and simulating track irregularity excitation, the dynamic interaction of vehicle-track-subgrade system is researched in theory and dynamic model of the vertical vehicle-track-subgrade coupled system under secondary suspension is established by compatibility condition of deformation. Even this model considers the actual structure of a vehicle, also considers vibration characteristic of the substructure of track including subgrade and foundation. All these work want to be benefit for understanding and design about the dynamic characters of subgrade in high speed railway.  相似文献   

14.
Requirements for current trains to be increasingly available have created the need to develop systems that can predict the quality of both trains and infrastructure components. The paper presents a new approach to the detection of rail truck irregularities, based on the measurements of bearing box acceleration during the operation of rail vehicles. The proposed procedure is based on an inverse problem solution, estimating track irregularities from measured acceleration of the applied model of vehicle dynamics. The simulation study of the proposed method, as well as its implementation, is presented. The method has been successfully applied for the identification of rail irregularities on a typical Polish railroad and vehicle.  相似文献   

15.
桥梁表面不平顺对车-桥耦合振动系统动力效应的影响   总被引:2,自引:0,他引:2  
利用模态分析法以及时变力学系统的求解方法,考虑桥面不平顺产生的随机激励,以简支梁桥为对象,计算了四自由度模型车辆-桥梁耦合系统的动力效应,讨论了不同等级桥面平整度情况下桥梁冲击系数、车辆垂直加速度、车轮对桥的作用力的变化规律。结果表明,随着不平整度系数逐渐增大,冲击系数逐渐增大;平整度较差等级的桥面,车辆垂直加速度较大,车轮对桥的作用力也较大。  相似文献   

16.
车-桥-线竖平面振动及其能量转化机制精细建模   总被引:1,自引:1,他引:0  
建立了考虑车-桥(线)纵向振动及其能量相互转化机制的竖平面内精细耦合运动方程.将车-桥(线)视为一个整体系统,车辆各剐体的纵向运动均作为独立的自由度,考虑到车-桥(线)纵向振动及其能量相互转化机制,车辆驱动或制动作用采用轮轨间的纵向相互作用力和轮对作用力矩模拟,桥梁、线路结构采用梁单元离散,线路与桥梁之间的钢轨基础采用竖向和纵向的均布弹簧阻尼连接,建立了竖平面内精细耦合运动方程,它可合理模拟车桥(线)间能量相互转化的过程.简支梁桥算例表明:车辆在桥上无驱动或制动运行过程中,不考虑轨道结构时车速先增加后减小,而考虑轨道结构时车速只有减小的趋势,轮对还发生了高频的纵向振动,且车体和轮对的纵向振动对轨道竖向不平顺较为敏感;此外,考虑轮轨滚动碾压作用和能量转化机制时,钢轨加速度响应略偏大.本文研究可为实际车辆动态变速运行的模拟和更精细空间耦合模型的建立提供研究基础.  相似文献   

17.
This paper presents a dynamic analytical model for tank train vibrations. The train is considered as a system of 27 degrees of freedom consisting of lateral, roll, yaw, vertical, and pitch motions for the vehicle body and its two bogies and lateral, roll and vertical motions for the four wheel-sets. Liquid sloshing in the tank is modeled using an equivalent mechanical mass-spring model. Coupling between the vehicle system and the railway track is realized through the interaction forces between the train and the rail, where the vertical and lateral irregularity profiles of the track are regarded as stationary ergodic Gaussian random processes and simulated by polynomial functions. Random vibration theory is used to obtain the response power spectral densities. Finally, numerical results for a typical test case including natural frequencies of a coupled system, frequency response functions, and output power spectral densities are presented.  相似文献   

18.
This paper presents a three-dimensional finite element model to investigate the interface damage occurred between prefabricated slab and CA (cement asphalt) mortar layer in the China Railway Track System (CRTS-II) slab track system. In the finite element model, a cohesive zone model with a non-linear constitutive law is introduced and utilized to model the damage, cracking and delamination at the interface. Combining with the temperature field database obtained from the three-dimensional transient heat transfer analysis, the interface damage evolution as a result of temperature change is analyzed. A three-dimensional coupled dynamic model of a vehicle and the slab track is then established to calculate the varying rail-supporting forces which are utilized as the inputs to the finite element model. The non-linearities of the wheel–rail contact geometry, the wheel–rail normal contact force and the wheel–rail tangential creep force are taken into account in the model. Setting the maximum interface damaged state calculated under temperature change as the initial condition, the interface damage evolution and its influence on the dynamic response of the slab track are investigated under the joint action of the temperature change and vehicle dynamic load. The analysis indicates that the proposed model is capable of predicting the initiation and propagation of cracks at the interface. The prefabricated slab presents lateral warping, resulting in severe interface damage on both the sides of the slab track along the longitudinal direction during temperature drop process, while the interface damage level does not change significantly under vehicle dynamic loads. The interface damage has great effects on the dynamic responses of the slab track.  相似文献   

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