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Aerodynamic Influences of High-Speed Trains

Aerodynamic Influences of High-Speed Trains

出版社:中国铁道出版社出版时间:2019-12-01
开本: 27cm 页数: 381页
本类榜单:工业技术销量榜
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Aerodynamic Influences of High-Speed Trains 版权信息

Aerodynamic Influences of High-Speed Trains 本书特色

随着高速列车运行速度的不断提升,气动作用对列车运行等方面的不利影响日益凸显,高速列车气动影响的研究成为推动我国高速铁路建设又快又好发展亟待突破的重大课题。在此形势下,本书作者,利用空气动力学原理,针对高速列车的各工况做了大量的研究与试验,以研究成果指导高速列车外形设计及隧道等工程设计,达到高速列车提速、安全双赢目标;并将所得成果分类、总结,用全英文著成此书,以期可以对内对外共同分享。 本书为全英文专著,是在2016年由中国铁道出版社出版的科技专著《高速列车气动影响》的基础上添加近几年的研究成果著作而成。2016年版《高速列车气动影响》由梁文灏院士作序,在“铁路科技图书出版基金”的资助下出版。随着中国“一带一路”建设工作的推进,高速铁路走出国门的项目越来越多,作者将《高速列车气动影响》翻译成英文,并加入近几年的*新研究内容,希望能够助力“一带一路”沿线铁路工程师的培训和在华留学的车辆工程研究生的学习。 本书共分为10章,详细阐述了明线会车压力波变化规律、隧道会车压力波、会车过程的气动作用力、列车通过隧道的气动作用、列车风对路边人员的气动作用、列车的横风效应、高速列车对挡风墙或声屏障的气动作用、高速空调客车内部流场、高速列车外部气动噪声等9个高速列车空气动力学方面的问题,对每个问题的论述均包括研究方法、三维模型、数据仿真、研究结果,论述均能做到观点鲜明、条理清晰、逻辑性强。本书的研究成果和针对当前高速列车设计中所遇问题提出了合理建议,可成为我国高速列车的气动优化设计和高速铁路安全运营改进非常有意义的参考资料;同时也能对我国高速铁路和高速列车相关设计标准的制定和推动我国高速列车空气动力学的发展产生积极的促进作用。 本书为英文版图书,获“铁路科技图书出版基金”资助。

Aerodynamic Influences of High-Speed Trains 内容简介

随着中国“一带一路”建设工作的推进, 高速铁路走出国门的项目越来越多。为使国外铁路工程师了解我们的高速列车空气动力学的研究, 作者将《高速列车气动影响》翻译成英文, 并加入近几年的*新研究内容, 希望能够助力“一带一路”沿线铁路工程师的培训和在华留学的车辆工程研究生的学习。

Aerodynamic Influences of High-Speed Trains 目录

1. Introduction References 2. Change of the Pressure Wave as Two Trains Opposite Meeting Pass on Open Line 2.1 Problem Statement 2.2 Research Methods 2.3 Analytical Model 2.4 Model Verification 2.5 Calculation and Analysis 2.6 Comparison of the Pressure Waves Generated by Different Shapes of the Train Head 2.7 Conclusions References 3. Pressure Wave Generated as Two Trains Opposite Meet in a Tunnel 3.1 Problem Statement 3.2 Research Methods 3.3 Three-Dimensional Simulation Analysis 3.4 Estimation of the Maximum Negative Pressure 3.5 Tunnel Critical Length and the Most Unfavorable Length when Two Trains Meet 3.6 Conclusions References 4. Aerodynamic Forces Generated as Two Trains Running in Opposite Directions Meet 4.1 Problem Statement 4.2 Research Methods 4.3 Computation Model and Basic Assumptions 4.4 Aerodynamic Forces Generated as Two Trains Meet on Open Line 4.5 Aerodynamic Forces Generated as Two Trains Meet in a Tunnel 4.5 Conclusions References 5. The Aerodynamic Effect of a Train Passing Through a Tunnel 5.1 Problem Statement 5.2 Research Methods 5.3 Analysis of Air Pressure Change as a Train Passes Through a Tunnel 5.4 The Most Unfavorable Tunnel Length as a Train Passes Through a Tunnel 5.5 Analysis of the Aerodynamic Effects of the Hood of the Tunnel 5.6 Aerodynamic Forces When a Train Passes Through a Double-Line Tunnel 5.7 Propagation of the Compression Wave in Long Tunnel 5.8 Conclusions References 6. Aerodynamic Effects of Train-Induced Airflow on Pedestrians 6.1 Problem Statement 6.2 Research Methods 6.3 Analysis Models 6.4 Results Analysis of the Numerical Calculation 6.5 The Relationship of the Aerodynamic Force with the Train Speed and the Distance and Train Shapes 6.6 Conclusions and Suggestion References 7. Impact of Crosswind on Train Operation 7.1 Problem Statement 7.2 Research Methods 7.3 Calculation Model and Train Operating Conditions 7.4 Crosswind Loads on Trains Without Windshields 7.5 Analysis of the Role of Windshields on Straight Railways 7.6 Analysis of the Optimal Height and Distance of the Windshield on Curve Railways 7.7 Conclusions References 8. Aerodynamic Effect of High-Speed Trains on the Windshield or Sound Barrier 8.1 Problem Statement 8.2 Research Methods 8.3 The Aerodynamic Load on the Sound Barrier 8.4 Strength Calculation of the Support Structure of the Sound Barrier 8.5 Fatigue Life Estimation of the Support Structure of the Sound Barrier 8.6 Conclusions References 9. Internal Flow Field of High-Speed Air-Conditioning Train 9.1 Problem Statement 9.2 Research Methods 9.3 Location of Fresh Air Inlets and Waste Exhaust Outlets 9.4 Calculation of Air Parameters in Passenger Car 9.5 Design Specification of Air Parameters and the Evaluation of Thermal Comfort in the Passenger Car 9.6 Comparison of Two Types of Air-Conditioning Systems 9.7 Impact of Sudden Changes in External Pressure on the Interior Environment of the Carriage 9.8 Conclusions References 10. External Aerodynamic Noise of High-Speed Train 10.1 Problem Statement 10.2 Research Methods 10.3 Numerical Analysis of External Sound Field of High-Speed Trains 10.4 The Far Field Aerodynamic Noise Including Quadrupole Sources 10.5 Calculation of the Sound Field caused by Micro-Pressure Wave 10.6 Conclusions References Appendix A: Tables Index Appendix B: Illustration Index Appendix C: Related papers published by Author in Recent Years
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Aerodynamic Influences of High-Speed Trains 作者简介

李人宪,1982年毕业于西安交通大学,获学士学位;之后到西南交通大学任教。1988年获工学硕士学位,1998年获工学博士学位。2002~2003年在瑞士联邦苏黎世理工学院做访问学者,2005年受英语皇家学会资助在剑桥大学作短期科学研究。现任西南交通大学机械工程学院教授,博士研究生导师。主要从事内燃机性能和车辆空气动力学领域的研究,主持完成多项国家级、省部级和企业委托的科研项目。已发表研究论文100余篇,主编出版图书4本。

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