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Dynamic Characteristics of Different Pantograph Structures for Heavy-Duty Trucks Considering Road Excitation
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作者 Yan Xu Dietmar Gohlich +4 位作者 Sangyoung Park William Zhendong Liu Ziwei Zhou Haiyang Qu Weidong Zhu 《Computer Modeling in Engineering & Sciences》 2025年第8期1655-1676,共22页
The emissions from traditional fossil heavy-duty trucks have become a conspicuous issue worldwide.The electrical road system(ERS)can offer a viable solution for achieving zero CO_(2) emissions and has high energy effi... The emissions from traditional fossil heavy-duty trucks have become a conspicuous issue worldwide.The electrical road system(ERS)can offer a viable solution for achieving zero CO_(2) emissions and has high energy efficiency in long-distance road cargo transport.While many kinds of pantograph structures have been developed for the ERS,their corresponding pantograph-catenary dynamic characteristics under different road conditions have not been investigated.This work performs a numerical study on the dynamics of the pantograph-catenary interaction of an ERS considering different pantograph structures.First,a pantograph-catenary-truck-road model is proposed.The reduced catenary model and reduced-plate model transmission method are used to minimize model scale.Three different types of ERS pantograph structures are considered in the model.After validation,the pantograph-catenary dynamics under the influence of truck-road interactions with complex road roughness and different pantographs are studied and compared.The corresponding vibration transmission mechanism is further focused.The results show that the truck-road interaction has a significant effect on the pantograph-catenary interaction,but the pantograph with only one lower and upper armcan isolate the roll vibrationmotion transmission fromthe truck to the collector head,which has the best dynamic performance and is suggested for use in the ERS. 展开更多
关键词 Heavy-duty truck pantograph-catenary system pantograph structure dynamic performance road roughness
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Aerodynamic uplift force improvement in single-strip high-speed pantograph via key parameter regulation with mechanism investigation 被引量:1
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作者 Yafeng Zou Xianghong Xu +2 位作者 Rui Zhou Zichen Liu Liming Lin 《Theoretical & Applied Mechanics Letters》 2025年第4期378-387,共10页
This study addresses the significant disparity in aerodynamic uplift forces experienced by single-strip high-speed pantographs under different operating directions.A systematic numerical investigation was conducted to... This study addresses the significant disparity in aerodynamic uplift forces experienced by single-strip high-speed pantographs under different operating directions.A systematic numerical investigation was conducted to evaluate the influence of key geometric parameters on aerodynamic characteristics,culminating in two targeted adjustment strategies.The reliability of the computational methodology was validated through comparative analysis,which revealed less than a 6%deviation in aerodynamic drag between the numerical simulations and wind tunnel tests.Aerodynamic decomposition revealed that the operating direction critically impacts the uplift force,which is governed by two factors:streamwise cross-strip positioning and the angular orientation of the arm hinge.These factors collectively determine the divergent aerodynamic responses of the panhead and frame during directional changes.By establishing a parametric database encompassing four strip-to-crossbar spacing configurations and six arm diameter variations,nonlinear response patterns of the uplift forces under different operating directions to geometric modifications were quantified.Both adjustment approaches,simultaneously reducing both streamwise and vertical strip-to-crossbar spacings to half of the original dimensions or increasing the upper arm spanwise diameter to 1.45 times and decreasing the lower arm spanwise diameter to 0.55 times the baseline values,successfully constrained aerodynamic uplift force deviations between operating directions within 3%. 展开更多
关键词 High-speed pantograph Aerodynamic uplift force Key parameter regulation Numerical simulation
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Numerical Analysis of Ice Accretion under Varying Conditions in thePantograph Region of High-Speed Trains
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作者 Xiulong Yao Mengge Yu +1 位作者 Jiali Liu Qian Zhang 《Fluid Dynamics & Materials Processing》 2025年第11期2795-2814,共20页
High-speed trains operating in freezing rain are highly susceptible to severe ice accretion in the pantograph region,which compromises both power transmission efficiency and dynamic performance.To elucidate the underl... High-speed trains operating in freezing rain are highly susceptible to severe ice accretion in the pantograph region,which compromises both power transmission efficiency and dynamic performance.To elucidate the underlying mechanisms of this phenomenon,an Euler-Euler multiphase flow model was employed to simulate droplet impingement and collection on the pantograph surface,while a glaze-ice formation model incorporating wall film dynamics was used to capture the subsequent growth of ice.The effects of key parameters—including liquid water content,ambient temperature,train velocity,and droplet diameter—on the amount and morphology of ice were systematically investigated.The results show that ice accumulation intensifies with increasing liquid water content decreasing ambient temperature,and rising train speed.In contrast,larger droplet diameters reduce the overall ice mass but promote localized accretion on major structural elements.This behavior arises because larger droplets,with greater inertia,are less susceptible to entrainment by airflow into the pantograph's base region.During extended operation,substantial ice buildup develops on the pantograph head and upper and lower arms,severely impairing current collection from the overhead line and hindering the pantograph's lifting and lowering motions. 展开更多
关键词 High-speed train pantograph supercooled droplets icing parameters
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Self-attention and convolutional feature fusion for real-time intelligent fault detection of high-speed railway pantographs
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作者 Xufeng LI Jien MA +3 位作者 Ping TAN Lanfen LIN Lin QIU Youtong FANG 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 2025年第10期997-1009,共13页
Currently,most trains are equipped with dedicated cameras for capturing pantograph videos.Pantographs are core to the high-speed-railway pantograph-catenary system,and their failure directly affects the normal operati... Currently,most trains are equipped with dedicated cameras for capturing pantograph videos.Pantographs are core to the high-speed-railway pantograph-catenary system,and their failure directly affects the normal operation of high-speed trains.However,given the complex and variable real-world operational conditions of high-speed railways,there is no real-time and robust pantograph fault-detection method capable of handling large volumes of surveillance video.Hence,it is of paramount importance to maintain real-time monitoring and analysis of pantographs.Our study presents a real-time intelligent detection technology for identifying faults in high-speed railway pantographs,utilizing a fusion of self-attention and convolution features.We delved into lightweight multi-scale feature-extraction and fault-detection models based on deep learning to detect pantograph anomalies.Compared with traditional methods,this approach achieves high recall and accuracy in pantograph recognition,accurately pinpointing issues like discharge sparks,pantograph horns,and carbon pantograph-slide malfunctions.After experimentation and validation with actual surveillance videos of electric multiple-unit train,our algorithmic model demonstrates real-time,high-accuracy performance even under complex operational conditions. 展开更多
关键词 High-speed railway pantograph Self-attention Convolutional neural network(CNN) REAL-TIME Feature fusion Faultdetection
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Aerodynamic noise reduction methods for key components of high-speed train pantographs
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作者 ZHU Jian-yue JI Jing-wen +2 位作者 GUO Zi-jian YANG Huan FANG Cun-yu 《Journal of Central South University》 2025年第12期4755-4776,共22页
The pantograph region constitutes one of the dominant aerodynamic sound sources in high-speed trains.In this study,a 1:3 scaled model of a representative pantograph structure was constructed,explicitly accounting for ... The pantograph region constitutes one of the dominant aerodynamic sound sources in high-speed trains.In this study,a 1:3 scaled model of a representative pantograph structure was constructed,explicitly accounting for the geometric configuration of its rod components.To achieve noise mitigation,the pantograph design incorporated aerodynamically optimized cylindrical rods with bio-inspired seal-vibrissa-shaped profiles,perforated geometries,and elliptical cross-sections,etc.The flow dynamics and aeroacoustic characteristics within the pantograph region were systematically investigated through the wall-adapting local eddy-viscosity large-eddy simulation coupled with the Ffowcs Williams-Hawkings(FW-H)acoustic analogy method.Results showed that the structural optimization of the pantograph key components greatly attenuated the vortex shedding intensity in the rod assemblies,inhibiting the initiation and evolution of large-scale Kármán vortex streets,reducing the surface pressure fluctuations,and enhancing the overall aerodynamic performance.In the optimized model of pantograph,the noise level at first tonal peak around 850 Hz is greatly mitigated and the second harmonic peak at 1750 Hz identified in the original model is absent,with overall sound pressure levels reduced by 6.3 dB(A)and 6.6 dB(A)along the streamwise and vertical planes,respectively.These findings validate the efficiency of the noise reduction methods introduced for the optimized pantograph structure. 展开更多
关键词 railway noise high-speed train pantograph aerodynamic noise prediction flow behavior noise reduction
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Radiated noise correction model for the dominant scale correlation of aerodynamic sound generation in pantograph cavity coupling system
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作者 TAN Xiao-ming FU Bao-jun +4 位作者 CHEN Zheng-wei LIU Jia-ming WU Yu-cai YANG Zhi-gang HUANG Sha 《Journal of Central South University》 2025年第12期4850-4867,共18页
The pantograph cavity coupling system(PCCS)of high-speed trains,as a representative region for aerodynamic noise generation,merits further investigation into its scale effects.In this paper,the large-eddy simulation(L... The pantograph cavity coupling system(PCCS)of high-speed trains,as a representative region for aerodynamic noise generation,merits further investigation into its scale effects.In this paper,the large-eddy simulation(LES)and the Ffowcs Williams-Hawkings(FW-H)integral equation are used to calculate and analyze the sound energy intensity distribution pattern and spectral characteristics of the PCCS at different scales(1/1,1/2,1/4,1/8,1/16,1/25,1/50).The research shows that as the scaled model decreases,the relative area of the pantograph submerged by the vehicle boundary layer increases,and its inflow velocity decreases,thereby reducing the overall radiated sound pressure level in this area.For the segments 1/1-1/2 and 1/4-1/16,the dominant scale of sound generation is typical pure tone noise,with distinct similar features in the spectral discrete scales.For the segments 1/25-1/50,the turbulent fluctuation characteristics of the vehicle boundary layer mask the peak features,and the spectrum is dominated by broadband characteristics.Combining the PCCS sound source energy scale correction model and the dimensionless spectrum correction function,a scale correction model for the sound power spectrum of the sound source is obtained,so that the noise results of the reduced-scale model can be corresponded to the full-scale model.This work advances the comprehension of high-speed train aerodynamic noise generation mechanisms and offers critical references for developing precision noise control technologies. 展开更多
关键词 pantograph cavity coupling aerodynamic noise scale effect large eddy simulation high-speed trains
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Modelling dynamic pantograph loads with combined numerical analysis
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作者 F.F.Jackson R.Mishra +6 位作者 J.M.Rebelo J.Santos P.Antunes J.Pombo H.Magalhaes L.Wills M.Askill 《Railway Engineering Science》 EI 2024年第1期81-94,共14页
Appropriate interaction between pantograph and catenary is imperative for smooth operation of electric trains.Changing heights of overhead lines to accommodate level crossings,overbridges,and tunnels pose significant ... Appropriate interaction between pantograph and catenary is imperative for smooth operation of electric trains.Changing heights of overhead lines to accommodate level crossings,overbridges,and tunnels pose significant challenges in maintaining consistent current collection performance as the pantograph aerodynamic profile,and thus aerodynamic load changes significantly with operational height.This research aims to analyse the global flow characteristics and aerodynamic forces acting on individual components of an HSX pantograph operating in different configurations and orientations,such that the results can be combined with multibody simulations to obtain accurate dynamic insight into contact forces.Specifically,computational fluid dynamics simulations are used to investigate the pantograph component loads in a representative setting,such as that of the recessed cavity on a Class 800 train.From an aerodynamic perspective,this study indicates that the total drag force acting on non-fixed components of the pantograph is larger for the knuckle-leading orientation rather than the knuckle-trailing,although the difference between the two is found to reduce with increasing pantograph extension.Combining the aerodynamic loads acting on individual components with multibody tools allows for realistic dynamic insight into the pantograph behaviour.The results obtained show how considering aerodynamic forces enhance the realism of the models,leading to behaviour of the pantograph-catenary contact forces closely matching that seen in experimental tests. 展开更多
关键词 pantograph-catenary interaction pantograph aerodynamics Computational fluid dynamics pantograph loads Current collection performance
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非线性随机Pantograph微分方程及其θ-方法的均方渐近稳定性 被引量:1
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作者 肖飞雁 张诚坚 《应用数学》 CSCD 北大核心 2009年第1期199-203,共5页
本文主要研究了非线性随机Pantograph微分方程,讨论了其零解的均方渐近稳定性并给出了零解均方渐近稳定的充分条件.在本文的第三部分,我们将随机θ-方法应用于这类问题,获得了数值解均方渐近稳定条件.
关键词 非线性随机 pantograph微分方程 均方渐近稳定 Θ-方法
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Pantograph and catenary system with double pantographs for high-speed trains at 350 km/h or higher 被引量:12
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作者 Weihua ZHANG Ning ZHOU Ruiping LI Guiming MEI Dongli SONG 《Journal of Modern Transportation》 2011年第1期7-11,共5页
The paper is aimed at developing an optimized design of the pantograph and catenary system with double pantographs at a speed of 350 km/h for the Wuhan-Guangzhou high-speed railway. First, the pantograph and catenary ... The paper is aimed at developing an optimized design of the pantograph and catenary system with double pantographs at a speed of 350 km/h for the Wuhan-Guangzhou high-speed railway. First, the pantograph and catenary system for the Beijing-Tianjin high-speed railway was analyzed to verify whether its design objective could be fulfilled. It shows that the system is not able to satisfy the requirement of a sustainable running speed of 350 km/h. Then a new scheme for the pantograph and catenary system is proposed through optimization and renovation of the structure and parameters of the pantograph and catenary system, including the suspension type of the catenary, tension of the contact wire, and space between two pantographs. Finally, the dynamic performance of the new system was verified by simulation and line testing. The results show that the new scheme of the pantograph and catenary system for the Wuhan- Guangzhou high-speed railway is acceptable, in which the steady contact between the rear pantograph and the catenary at the space of 200 m can be maintained to ensure the current-collection quality. A current collection with double pantographs at a speed of 350 km/h or higher can be achieved. 展开更多
关键词 CATENARY pantograph dynamic performance double pantographs
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Pantograph-catenary electrical contact system of high-speed railways:recent progress,challenges,and outlooks 被引量:13
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作者 Guangning Wu Keliang Dong +10 位作者 Zhilei Xu Song Xiao Wenfu Wei Huan Chen Jie Li Zhanglin Huang Jingwei Li Guoqiang Gao Guozheng Kang Chuanjun Tu Xingyi Huang 《Railway Engineering Science》 2022年第4期437-467,共31页
As the unique power entrance,the pantograph-catenary electrical contact system maintains the efficiency and reliability of power transmission for the high-speed train.Along with the fast development of high-speed rail... As the unique power entrance,the pantograph-catenary electrical contact system maintains the efficiency and reliability of power transmission for the high-speed train.Along with the fast development of high-speed railways all over the world,some commercialized lines are built for covering the remote places under harsh environment,especially in China;these environmental elements including wind,sand,rain,thunder,ice and snow need to be considered during the design of the pantograph-catenary system.The pantograph-catenary system includes the pantograph,the contact wire and the interface—pantograph slide.As the key component,this pantograph slide plays a critical role in reliable power transmission under dynamic condition.The fundamental material characteristics of the pantograph slide and contact wire such as electrical conductivity,impact resistance,wear resistance,etc.,directly determine the sliding electrical contact performance of the pantograph-catenary system;meanwhile,different detection methods of the pantograph-catenary system are crucial for the reliability of service and maintenance.In addition,the challenges brought from extreme operational conditions are discussed,taking the Sichuan-Tibet Railway currently under construction as a special example with the high-altitude climate.The outlook for developing the ultra-high-speed train equipped with the novel pantograph-catenary system which can address the harsher operational environment is also involved.This paper has provided a comprehensive review of the high-speed railway pantograph-catenary systems,including its progress,challenges,outlooks in the history and future. 展开更多
关键词 High-speed railway pantograph-catenary system Contact wire pantograph slide Status detection
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Multi-parameter joint optimization for double-strip high-speed pantographs to improve pantograph-catenary interaction quality 被引量:3
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作者 Mengzhen Wu Xianghong Xu +3 位作者 Yongzhao Yan Yi Luo Sijun Huang Jianshan Wang 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2022年第1期137-147,共11页
The significant increase in speed of high-speed train will cause the dynamic contact force of the pantograph-catenary system to fluctuate more severely,which poses a challenge to the study of the pantograph-catenary r... The significant increase in speed of high-speed train will cause the dynamic contact force of the pantograph-catenary system to fluctuate more severely,which poses a challenge to the study of the pantograph-catenary relationship and the design of highspeed pantographs.Good pantograph-catenary coupling quality is the essential condition to ensure safe and efficient operation of high-speed train,stable and reliable current collection,and reduction in the wear of contact wires and pantograph contact strips.Among them,the dynamic parameters of high-speed pantographs are crucial to pantograph-catenary coupling quality.With the reduction of the standard deviation of the pantograph-catenary contact force as the optimization goal,multi-parameter joint optimization designs for the high-speed pantograph with two contact strips at multiple running speeds are proposed.Moreover,combining the sensitivity analysis at the optimal solutions,with the parameters and characteristics of in-service DSA380 highspeed pantograph,the optimization proposal of DSA380 was given. 展开更多
关键词 High-speed pantograph pantograph-catenary interaction quality Multi-parameter joint optimization
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Issues in the Influence of Ito-type Noise on the Oscillation of Solutions of Delay Differential Pantograph Equations 被引量:3
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作者 Augustine O. Atonuje 《Journal of Mathematics and System Science》 2015年第11期480-487,共8页
In this paper, a deterministic delay differential pantograph equation (DDPE) with an unbounded memory is stochastically perturbed by an Ito-type noise. The contribution of white noise to the oscillatory behaviour of... In this paper, a deterministic delay differential pantograph equation (DDPE) with an unbounded memory is stochastically perturbed by an Ito-type noise. The contribution of white noise to the oscillatory behaviour of the new stochastic delay differential pantograph equation (SDDPE) is investigated. It is established that under certain conditions and with a highly positive probability, the new stochastic delay differential pantograph equation has an oscillatory solution influenced by the presence of the noise. This is not possible with the original deterministic system which has a non-oscillatory solution due to the absence of noise. 展开更多
关键词 Delay differential pantograph equation unbounded memory Ito-type noise oscillatory behaviour stochastic delaydifferential pantograph equation.
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单支方法关于多延迟Pantograph方程的稳定性分析
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作者 黄枝姣 《应用数学》 CSCD 北大核心 2001年第S1期217-220,共4页
本文主要讨论了单支方法关于多延迟pantograph方程解的存在唯一性及渐近稳定性 ,同时将非线性多延迟系统数值解的有关结论推广到多延迟pantograph方程 ,证明了单支方法对于ODEs的A(α) 稳定等价于单支方法关于多延迟pantograph方程NGPk... 本文主要讨论了单支方法关于多延迟pantograph方程解的存在唯一性及渐近稳定性 ,同时将非线性多延迟系统数值解的有关结论推广到多延迟pantograph方程 ,证明了单支方法对于ODEs的A(α) 稳定等价于单支方法关于多延迟pantograph方程NGPk(α) 稳定 . 展开更多
关键词 单支方法 多延迟pantograph方程 渐近稳定性 A(α)-稳定 NGPk(α)-稳定
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Pantograph-catenary are test apparatus for high-speed railway 被引量:1
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作者 WU Jie WU Guangning +4 位作者 GAO Guoqiang ZHU Guangya HAO Jing ZHU Ningjun ZHOU Yue 《Instrumentation》 2014年第2期60-66,共7页
With the continuous increase of train speed,undulations of catenary and vibrations of the pantograph head result in generating pantograph- catenary arc frequently,intensifying the abrasion between pantograph strip and... With the continuous increase of train speed,undulations of catenary and vibrations of the pantograph head result in generating pantograph- catenary arc frequently,intensifying the abrasion between pantograph strip and catenary wire,which has seriously influenced the current collection and safety of electric multi units(EMU). It is necessary to study the pantographcatenary arc in immediately. Some researchers develop a few pantograph- catenary arc testing equipment,which couldn’t really reflect the operating condition of pantograph-catenary system. In this paper,the pantograph-catenary arc test apparatus was developed,which simulated the flexible and straight contact of pantograph strip and catenary wire,based on the coupling relationship between pantograph and catenary. The equipment was used to research the electrical parameters of the pantograph-catenary arc and the dynamic contact resistance. 展开更多
关键词 pantograph-catenary arc dynamic contact resistance pantograph strip catenary wire
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Electrical Characteristics of Arcing Arc of Pantograph in the Process of Receiving Bow in High Speed Railway
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作者 JIA Haoyu 《外文科技期刊数据库(文摘版)工程技术》 2021年第5期384-386,共5页
Catch arc is the bottleneck of train acceleration. The arc characteristics of pantograph is an important index of the current high-speed train problems, which will seriously affect the normal operation of traction dri... Catch arc is the bottleneck of train acceleration. The arc characteristics of pantograph is an important index of the current high-speed train problems, which will seriously affect the normal operation of traction drive system. The study of the characteristics of the pantograph arc in the process of off-line pantograph can provide some help for improving the quality of the current receiving and the safe operation of the train. 展开更多
关键词 pantograph arc pantograph the offline features
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Dynamic performance of a pantograph-catenary system with the consideration of the appearance characteristics of contact surfaces 被引量:18
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作者 Ning ZHOU Wei-hua ZHANG Rui-ping LI 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2011年第12期913-920,共8页
In this paper,a modeling method for a pantograph-catenary system is put forward to investigate the dynamic contact behavior in space,taking into consideration of the appearance characteristics of the contact surfaces ... In this paper,a modeling method for a pantograph-catenary system is put forward to investigate the dynamic contact behavior in space,taking into consideration of the appearance characteristics of the contact surfaces of the pantograph and catenary.The dynamic performance of the pantograph-catenary system,including contact forces,accelerations,and the corresponding spectra,is analyzed.Furthermore,with the modeling method,the influences of contact wire irregularity and the vibration caused by the front pantograph on the rear pantograph for a pantograph-catenary system with double pantographs are investigated.The results show that the appearance characteristics of the contact surfaces play an important role in the dynamic contact behavior.The appearance characteristics should be considered to reasonably evaluate the dynamic performance of the pantograph-catenary system. 展开更多
关键词 CATENARY pantograph Dynamic performance Appearance characteristics
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Optimization of high-speed railway pantographs for improving pantograph-catenary contact 被引量:19
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作者 Jorge Ambrósio Joo Pombo Manuel Pereira 《Theoretical & Applied Mechanics Letters》 CAS 2013年第1期51-57,共7页
A crucial system for the operation of high-speed trains is the pantograph catenary interface as it is the sole responsible to deliver electrical power to the train. Being the catenary a stationary system with a long l... A crucial system for the operation of high-speed trains is the pantograph catenary interface as it is the sole responsible to deliver electrical power to the train. Being the catenary a stationary system with a long lifespan it is also less likely to be redesigned and upgraded than the pantographs that fit the train vehicles. This letter proposes an optimization procedure for the improvement of the contact quality between the pantograph and the catenary solely based on the redesign of the pantograph head suspension characteristics. A pantograph model is defined and validated against experimental dynamic characteristics of existing pantographs. An optimization strategy based on the use of a global optimization method, to find the vicinity of the optimal solution, followed by the use of a deterministic optimization algorithm, to fine tune the optimal solution, is applied here. The spring stiffness, damping characteristics and bow mass are the design variables used for the pantograph optimization. The objective of the optimal problem is the minimization of the standard deviation of the contact force history, which is the most important quantity to define the contact quality. The pantograph head suspension characteristics are allowed to vary within technological realistic limits. It is found that current high-speed railway pantographs have a limited potential for mechanical improvements, not exceeding 10% 15% on the decrease of the standard deviation of the contact force. C 2013 The Chinese Society of Theoretical and Applied Mechanics. [doi:10.1063/2.1301306] 展开更多
关键词 high-speed RAILWAY pantograph
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Influence of pantograph fixing position on aerodynamic characteristics of high-speed trains 被引量:9
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作者 Liang Zhang Jiye Zhang +1 位作者 Tian Li Weihua Zhang 《Journal of Modern Transportation》 2017年第1期34-39,共6页
To study the influence of the pantograph fixing position on aerodynamic characteristics of high-speed trains, the aerodynamic models of high-speed trains with eight cars were established based on the theory of com- pu... To study the influence of the pantograph fixing position on aerodynamic characteristics of high-speed trains, the aerodynamic models of high-speed trains with eight cars were established based on the theory of com- putational fluid dynamics, and eight cases with pantographs fixed on different positions and in different operational orientations were considered. The pantographs were fixed on the front or the rear end of the first middle car or fixed on the front or the rear end of the last middle car. The external flow fields of the high-speed trains were numeri- cally simulated using the software STAR-CCM+. The results show that the pantograph fixing position has little effect on the aerodynamic drag force of the head car and has a large effect on the aerodynamic drag force of the tail car. The influences of the pantograph fixing position on the aerodynamic lift forces of the head car, tail car and pan- tographs are obvious. Among the eight cases, considering the total aerodynamic drag force of the train and the aerodynamic lift force of the lifted pantograph, when the pantographs are fixed on the rear end of the last middle car and the lifted pantograph is in the knuckle-upstream ori- entation, the aerodynamic performance of the high-speed train is the best. 展开更多
关键词 High-speed train pantograph Fixing position Aerodynamic characteristics Computational fluid dynamics
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Numerical investigation of influence of pantograph parameters and train length on aerodynamic drag of high-speed train 被引量:13
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作者 SUN Zhi-kun WANG Tian-tian WU Fan 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第4期1334-1350,共17页
This study investigates the influence of different pantograph parameters and train length on the aerodynamic drag of high-speed train by the delayed detached eddy simulation(DDES) method. The train geometry considered... This study investigates the influence of different pantograph parameters and train length on the aerodynamic drag of high-speed train by the delayed detached eddy simulation(DDES) method. The train geometry considered is the high-speed train with pantographs, and the different versions have 3, 5, 8, 10, 12, 16 and 17 cars. The numerical results are verified by the wind tunnel test with 3.6% difference. The influences of the number of cars and the position, quantity and configuration of pantographs on flow field around high-speed train and wake vortices are analyzed. The aerodynamic drag of middle cars gradually decreases along the flow direction. The aerodynamic drag of pantographs decreases with its backward shift, and that of the first pantograph decreases significantly. As the number of pantographs increases, its effect on the aerodynamic drag decrease of rear cars is more significant. The engineering application equation for the aerodynamic drag of high-speed train with pantographs is proposed. For the 10-car and 17-car train, the differences of total aerodynamic drag between the equation and the simulation results are 1.2% and 0.4%, respectively. The equation generalized in this study could well guide the design phase of high-speed train. 展开更多
关键词 high-speed train pantograph train length aerodynamic drag
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Numerical Study on Aerodynamic Performance of High-Speed Pantograph with Double Strips 被引量:13
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作者 Zhiyuan Dai Tian Li +1 位作者 Weihua Zhang Jiye Zhang 《Fluid Dynamics & Materials Processing》 EI 2020年第1期31-40,共10页
Pantograph is a critical component of the high-speed train.It collects power through contact with catenary,which significantly affects the running safety of the train.Pantograph with double collector strips is one com... Pantograph is a critical component of the high-speed train.It collects power through contact with catenary,which significantly affects the running safety of the train.Pantograph with double collector strips is one common type.The aerodynamic performance of the collector strips may affect the current collection of the pantograph.In this study,the aerodynamic performance of the pantograph with double strips is investigated.The numerical results are consistent with the experimental ones.The error in the aerodynamic drag force of the pantograph between numerical and experimental results is less than 5%.Three different conditions of the strips are studied,including the front strip,the rear strip,and the double strips.Results show that the presence of the front strip will affect the lift force of the rear strip,and reduce the resistance of the rear strip under the opening condition.Meanwhile,the rear strip has few effects on the front strip under the opening operation condition.The law of the resistance for the interaction between two strips under the closing condition is similar to the opening one. 展开更多
关键词 pantograph double strip train aerodynamics numerical simulation
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