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Train Aerodynamics: Fundamentals and Applications

Autor Chris Baker, Terry Johnson, Dominic Flynn, Hassan Hemida, Andrew Quinn, David Soper, Mark Sterling
en Limba Engleză Paperback – 12 iun 2019
Train Aerodynamics: Fundamentals and Applications is the first reference to provide a comprehensive overview of train aerodynamics with full scale data results. With the most up-to-date information on recent advances and the possibilities of improvement in railway facilities, this book will benefit railway engineers, train operators, train manufacturers, infrastructure managers and researchers of train aerodynamics. As the subject of train aerodynamics has evolved slowly over the last few decades with train speeds gradually increasing, and as a result of increasing interest in new train types and high-speed lines, this book provides a timely resource on the topic.


  • Examines the fundamentals and the state-of-the-art of train aerodynamics, beginning with experimental, numerical and analytical tools, and then thoroughly discussing the specific approaches in other sections
  • Features the latest developments and progress in computational aerodynamics and experimental facilities
  • Addresses problems relating to train aerodynamics, from the dimensioning of railway structures and trains, to risk analysis related to safety issues and maintenance
  • Discusses basic flow patterns caused by bridges and embankments
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Specificații

ISBN-13: 9780128133101
ISBN-10: 0128133104
Pagini: 402
Dimensiuni: 152 x 229 x 26 mm
Greutate: 0.54 kg
Editura: ELSEVIER SCIENCE

Public țintă

Academics, postgraduate students that do research on Fluid Mechanics and or Applied Mathematics, + industry & agencies likely to be involved in planning high-speed lines. Also those involved in railway field for maintenance (both rolling stock and infrastructure), train operators, train manufacturers, and infrastructure managers.

Cuprins

1. Background and a brief history2. Experimental, numerical and analytical tools3. The flow around trains4. Aerodynamic resistance of trains and shape optimization5. Loads on trackside structures and people6. Ballast flight beneath trains7. Aerodynamic effects on pantographs and overhead wire systems8. Cross wind effects on trains9. Pressure transients and sonic booms in tunnels10. Emerging issues