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91.
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考虑流体-桩-土相互作用的独桩平台波浪响应的TMD 控制研究 总被引:2,自引:0,他引:2
采用调谐质量阻尼器对独桩平台的波浪响应进行控制,在对受控结构的波浪响应进行随机振动分析时,考虑了流体-桩土桩互作用的影响,通过一算例具体讨论了TMD的参数对控制效果的影响,计算经表明,适当选择TMD的参数可有效地控制独桩平台的波浪响应,因此TMD在简易平台的振动控制领域有着良好的应用前景。 相似文献
93.
Santiago Gregori Manuel Tur Enrique Nadal Francisco Javier Fuenmayor 《Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility》2018,56(8):1162-1186
The quality of current collection becomes a limiting factor when the aim is to increase the speed of the present railway systems. In this work an attempt is made to improve current collection quality optimising catenary geometry by means of a genetic algorithm (GA). As contact wire height and dropper spacing are thought to be highly influential parameters, they are chosen as the optimisation variables. The results obtained show that a GA can be used to optimise catenary geometry to improve current collection quality measured in terms of the standard deviation of the contact force. Furthermore, it is highlighted that apart from the usual pre-sag, other geometric parameters should also be taken into account when designing railway catenaries. 相似文献
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介绍了深水桥墩液固耦合模型在ANSYS软件中模型的建立。利用Morison方程提出的附加质量概念考虑动水压力对桥墩作用,采用3种截面积相等的不同类型桥墩,即淹没水深相同时,所受动水压力相等。利用ANSYS建立实体单元与Fluid30单元来分析液固耦合作用对不同类型桥墩的自振特性影响。通过实例分析发现液固耦合对桥墩自振频率的影响是显著的,桥墩完全被水淹没时,其自振频率最大下降了24.2%。进一步研究发现相同截面面积的不同类型的桥墩,在相同水深时,由于其液固耦合接触面沿坐标轴方向上的正投影面积大小不一样,造成桥墩沿该方向上自振频率下降量大不相同。且沿坐标轴方向正截面面积越大,桥墩沿该轴方向上的弯曲自振频率和扭曲自振频率下降越大。 相似文献
96.
Ning Zhou Qingsong Lv Yi Yang Weihua Zhang 《Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility》2015,53(3):380-391
TPL-PCRUN is a software program for the dynamic interaction simulation of pantograph–catenary systems. In the benchmark, based on the finite element method, the catenary model was built and the pantograph was considered as a three-level spring–damper–mass system. Then, through the contact definition between pantograph and catenary, the coupled model of the pantograph and catenary system was established. The respective dynamic equations of motions were solved by the time integration method. Thus, the simulation results were obtained and submitted for the comparison with the other software. On the other hand, a standard model from EN50318 was established and analysed by TPL-PCRUN. The simulation results by TPL-PCRUN were remarkably consistent with the reference values given by EN50318. It was proved that the results by TPL-PCRUN can be reliable. Recently, the software has been updated and improved. Some new models and algorithms are proposed, including the rigid–flexible hybrid pantograph model, contact definition considering appearance characteristics of the contact surfaces, a fluid–solid coupling algorithm of the pantograph and catenary system, etc. 相似文献
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M. Ziyaeifar 《Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility》2005,43(11):771-794
The investigation of problems related to the interaction of train, bridge and track systems has been accelerated by the emergence of high-speed trains. Such studies are required, not only for the endurance issues regarding bridge and tracks, but to assure trains' functionality and performance. The suspension mechanism of train systems is of prime importance in defining the functionality of high-speed trains, and accurate mathematical models of the mechanism are imperative. This paper introduces a numerical technique for an interaction study of train-bridge-track systems based on Maxwell (three-element type) modeling of the suspension mechanisms of vehicles. Track irregularity in sinusoidal form is also integrated into the mathematical model. Although the proposed technique is simple in formulation, it offers phenomenal accuracy in representing the interaction of train, track and bridge systems. In a numerical example, the dynamic behavior of a train-bridge system has been studied. Results of this analysis provide a valuable insight into the contributing roles of different parameters in this subject. 相似文献
99.
减轻列车轮轨横向动力作用的技术措施 总被引:1,自引:0,他引:1
基于铁道车辆-轨道耦合动力学理论及仿真分析系统,分析了机车车辆悬挂参数、结构参数及轨道结构参数对轮轨横向相互作用的影响,在此基础上提出了降低轮轨横向动力作用的技术措施:(1)一系水平定位刚度(纵向和横向刚度)对轮轨横向动力作用影响较大,刚度值选取的基本设计原则是,在充分满足运动稳定性的前提下,尽可能降低刚度值;(2)二系水平(包括纵向和横向)刚度对轮轨横向动力作用影响不明显,设计时,应更多地考虑机车车辆的平稳性;(3)簧下质量对轮轨横向动力作用影响较大,较小簧下质量,将使轮轨横向动力作用得到显著的降低;(4)较低的扣件横向刚度、扣件垂向刚度及道床横向刚度等参数值将有利于降低轮轨横向动力作用。 相似文献
100.