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231.
在现场的应用中,ZPW-2000A型无绝缘移频轨道电路在安全性和可靠性方面有着显著优势,但其分路特性的改善是需要关注的问题。采用电平衰耗法的计算方法,对无补偿电容、有补偿电容和有最佳补偿电容时的无绝缘轨道电路的分路特性进行分析,并用Matlab软件仿真得到轨面各点的分路灵敏度和分路残压比较结果。结果表明,补偿电容对轨道电路的分路特性有明显的改善作用,而找到最佳补偿电容值对轨道电路进行补偿,不但能同时保证轨道电路全程可靠分路,并且降低了分路残压,使得无绝缘轨道电路的分路特性更稳定。  相似文献   
232.
城轨交通车场线轨道结构的探讨   总被引:1,自引:1,他引:0  
研究目的:为满足城轨交通运营的需要,必须设置车辆段与综合基地.在调查研究我国城轨交通工程已建成运营的车辆段与综合基地铺设的车场线路使用情况的基础上,依据不同的车场线路类型研究设计相应的轨道结构,并结合成熟的国铁设计理论和经验,对车场线路轨道结构进行优化.研究结论:试车线及其它库外线设置碎石道床可减振降噪,减小对周边环境的影响并能降低工程造价;库内线根据不同工艺要求设置立柱式和坑道式检查坑整体道床,可方便工艺操作,并可减少线路养护维修工作量.线路均采用弹性扣件,增强了轨道安全性及稳定性,取消了轨道加强设备,减小了养护维修工作量.同时合理的设置车场线路道口、车挡等轨道附属设备,可以更好的为运营服务.  相似文献   
233.
A sensitivity analysis has been performed to assess the influence of the elastic properties of railway vehicle suspensions on the vehicle dynamic behaviour. To do this, 144 dynamic simulations were performed modifying, one at a time, the stiffness and damping coefficients, of the primary and secondary suspensions. Three values were assigned to each parameter, corresponding to the percentiles 10, 50 and 90 of a data set stored in a database of railway vehicles. After processing the results of these simulations, the analysed parameters were sorted by increasing influence. It was also found which of these parameters could be estimated with a lesser degree of accuracy in future simulations without appreciably affecting the simulation results. In general terms, it was concluded that the highest influences were found for the longitudinal stiffness and the lateral stiffness of the primary suspension, and the lowest influences for the vertical stiffness and the vertical damping of the primary suspension, with the parameters of the secondary suspension showing intermediate influences between them.  相似文献   
234.
客运专线无砟轨道系统设计   总被引:3,自引:1,他引:2  
根据我国客运专线的工程特点,无砟轨道结构选型应遵循施工性、维护性、动力性、适应性和经济性的5个基本原则,并给出2类无砟轨道的性能.在研究确定无砟轨道设计理论和原则的基础上,建议设计轮重取静轮重的3倍、疲劳检算轮重取静轮重的1.5倍.板式无砟轨道不同弹性模量的砂浆垫层对轨下基础刚度的影响不同,建议研发新型填充层材料.合理确定无砟轨道的弹性,建议轨下基础刚度的合理范围为20~30kN·mm-1.通过定期打磨钢轨和钢轨无缝化,降低噪音;通过降低轨道刚度、提高轨道参振质量,降低线路下部结构物的振动.无砟轨道的设计寿命应为60年,为此应制定相应的维修标准和管理办法.  相似文献   
235.
郑西客运专线渑池至灵宝段路基上采用了结构上具有高度整体性的双块式无碴轨道,其道床为现场混凝土浇筑。这种型式的无碴轨道具有便于施工、高平顺性、高稳定性、刚度均匀性好、结构耐久性强和少维修的特点。此文重点介绍双块式无碴轨道在郑西客运专线渑池至灵宝段路基上的施工工艺流程、施工方法和施工注意事项。研究表明,该施工工艺和方法适用于工点类型多,结构复杂的路基。  相似文献   
236.
选大鼠及小鼠用醋酸铅腹腔染毒法,初步探讨了铅对鼠红细胞免疫功能的影响。结果表明,连续染毒2周后,大鼠及小鼠的RBC-C_3b受体花环率未见明显改变,而RBC-IC受体花环率随染毒剂量的增加呈递增趋势,高剂量组与对照组比较均有显著性差异(P<0.05)。  相似文献   
237.
利用已研究出的高速铁路动荷载,采用粘弹性边界,运用有限元法建立轨道-路基-大地二维动力分析模型,分析板式无砟轨道交通引起的振动在大地中的传播特性。计算分析表明:地表的振动强度随着离轨道中心线的距离增加而逐渐衰减。离轨道中心线近处,地表振动较强,而且加速度主要频段在20 Hz以上;离轨道中心线较远处,振动较小,加速度主要频段在10 Hz以下。随着离轨道中心距离的增加,加速度幅值随之减小,而且地表20 Hz以上的振动衰减得较快,10 Hz以下的振动衰减得较慢。  相似文献   
238.
A numerical method to simulate vertical dynamic interaction between a rolling train and a railway track has been used to investigate the influence of stochastic properties of the track structure. A perturbation technique has been used to investigate the influence of the scatter in selected track properties. The train-track interaction problem has been numerically solved by use of an extended state-space vector approach in conjunction with a complex modal superposition for the whole track structure. All numerical simulations have been carried out in the time-domain with a moving mass model. Properties such as rail pad stiffness, ballast stiffness, dynamic ballast-subgrade mass and sleeper spacing have been studied. To obtain sufficient statistical information from track structures, full-scale measurements in the field and laboratory measurements have been carried out. The influence of scatter in the track properties on the maximum contact force between the rail and the wheel, the maximum magnitude of the vertical wheelset acceleration, and the maximum sleeper displacement have been studied. Mean values and standard deviations of these quantities have been calculated. The effects of the variation of the investigated track properties are discussed.  相似文献   
239.
A two-dimensional computational model for assessment of rolling contact fatigue induced by discrete rail surface irregularities, especially in the context of so-called squats, is presented. Dynamic excitation in a wide frequency range is considered in computationally efficient time-domain simulations of high-frequency dynamic vehicle–track interaction accounting for transient non-Hertzian wheel–rail contact. Results from dynamic simulations are mapped onto a finite element model to resolve the cyclic, elastoplastic stress response in the rail. Ratcheting under multiple wheel passages is quantified. In addition, low cycle fatigue impact is quantified using the Jiang–Sehitoglu fatigue parameter. The functionality of the model is demonstrated by numerical examples.  相似文献   
240.
Proper rail geometry in the crossing part is essential for reducing damage on the nose rail. To improve the dynamic behaviour of turnout crossings, a numerical optimisation approach to minimise rolling contact fatigue (RCF) damage and wear in the crossing panel by varying the nose rail shape is presented in the paper. The rail geometry is parameterised by defining several control cross-sections along the crossing. The dynamic vehicle–turnout interaction as a function of crossing geometry is analysed using the VI-Rail package. In formulation of the optimisation problem a combined weighted objective function is used consisting of the normal contact pressure and the energy dissipation along the crossing responsible for RCF and wear, respectively. The multi-objective optimisation problem is solved by adapting the multipoint approximation method and a number of compromised solutions have been found for various sets of weight coefficients. Dynamic behaviour of the crossing has been significantly improved after optimisations. Comparing with the reference design, the heights of the nose rail are notably increased in the beginning of the crossing; the nominal thicknesses of the nose rail are also changed. All the optimum designs work well under different track conditions.  相似文献   
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