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Multi-objective aerodynamic optimization design of high-speed maglev train nose 被引量:1
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作者 Shuanbao Yao Dawei Chen sansan ding 《Railway Sciences》 2022年第2期273-288,共16页
Purpose–The nose length is the key design parameter affecting the aerodynamic performance of high-speed maglev train,and the horizontal profile has a significant impact on the aerodynamic lift of the leading and trai... Purpose–The nose length is the key design parameter affecting the aerodynamic performance of high-speed maglev train,and the horizontal profile has a significant impact on the aerodynamic lift of the leading and trailing cars Hence,the study analyzes aerodynamic parameters with multi-objective optimization design.Design/methodology/approach–The nose of normal temperature and normal conduction high-speed maglev train is divided into streamlined part and equipment cabin according to its geometric characteristics.Then the modified vehicle modeling function(VMF)parameterization method and surface discretization method are adopted for the parametric design of the nose.For the 12 key design parameters extracted,combined with computational fluid dynamics(CFD),support vector machine(SVR)model and multi-objective particle swarm optimization(MPSO)algorithm,the multi-objective aerodynamic optimization design of highspeed maglev train nose and the sensitivity analysis of design parameters are carried out with aerodynamic drag coefficient of the whole vehicle and the aerodynamic lift coefficient of the trailing car as the optimization objectives and the aerodynamic lift coefficient of the leading car as the constraint.The engineering improvement and wind tunnel test verification of the optimized shape are done.Findings–Results show that the parametric design method can use less design parameters to describe the nose shape of high-speed maglev train.The prediction accuracy of the SVR model with the reduced amount of calculation and improved optimization efficiency meets the design requirements.Originality/value–Compared with the original shape,the aerodynamic drag coefficient of the whole vehicle is reduced by 19.2%,and the aerodynamic lift coefficients of the leading and trailing cars are reduced by 24.8 and 51.3%,respectively,after adopting the optimized shape modified according to engineering design requirements. 展开更多
关键词 Design of head shape Maglev train Aerodynamic parameter Multi-objective optimization Parametric design
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Development of new electromagnetic suspension-based high-speed Maglev vehicles in China:Historical and recent progress in the field of dynamical simulation 被引量:3
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作者 sansan ding Peter Eberhard +9 位作者 Georg Schneider Patrick Schmid Arnim Kargl Yong Cui Ullrich Martin Xin Liang Chao Huang Markus Bauer Florian Dignath Qinghua Zheng 《International Journal of Mechanical System Dynamics》 2023年第2期97-118,共22页
High-speed Maglev is a cutting-edge technology brought back into the focus of research by plans of the Chinese government for the development of a new 600 km/h Maglev train.A Chinese‐German cooperation with industria... High-speed Maglev is a cutting-edge technology brought back into the focus of research by plans of the Chinese government for the development of a new 600 km/h Maglev train.A Chinese‐German cooperation with industrial and academic partners has been established to pursue this ambitious goal and bring together experts from multiple disciplines.This contribution presents the joint work and achievements of CRRC Qingdao Sifang,thyssenkrupp Transrapid,CDFEB,and the ITM of the University of Stuttgart,regarding research and development in the field of high‐speed Maglev systems.Furthermore,an overview is given of the historical development of the Transrapid in Germany,the associated development of dynamical simulation models,and recent developments regarding high-speed Maglev trains in China. 展开更多
关键词 MAGLEV high-speed Maglev vehicle magnetic levitation simulation models dynamic simulation vehicle dynamics
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Development progress of China's 600 km/h high-speed magnetic levitation train 被引量:1
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作者 Zhiqiang ZHANG sansan ding +1 位作者 Changlong ZHAO Xin LIANG 《Frontiers of Engineering Management》 2022年第3期509-515,共7页
1outline Launched in 2016 with a focus on the key technologies relatedtohigh-speed magnetic levitation,China's 600 km/h high-speed maglev train project has provided a number of engineering breakthroughs.Focusing o... 1outline Launched in 2016 with a focus on the key technologies relatedtohigh-speed magnetic levitation,China's 600 km/h high-speed maglev train project has provided a number of engineering breakthroughs.Focusing on the development process of China's high-speed maglev system,this paper provides a description ofits development history,the innovations achieved,and the capabilities formed throughout the project.The paper commences by introducing the performance and technical innovation of thehigh-speedmaglevsystem interms of aerodynamic design,system dynamics,system energy consumption,vibration and noise reduction,and electromagnetic compatibility,among others. 展开更多
关键词 600 km/h high-speed magnetic levitation train development history technological innovation
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