10% off all books and free delivery over £40 - Last Express Posting Date for Christmas: 20th December
Buy from our bookstore and 25% of the cover price will be given to a school of your choice to buy more books. *15% of eBooks.

Noise and Vibration Mitigation for Rail Transportation Systems

View All Editions

The selected edition of this book is not available to buy right now.
Add To Wishlist
Write A Review

About

Noise and Vibration Mitigation for Rail Transportation Systems Synopsis

The book reports on the 11th International Workshop on Railway Noise, held on

9 - 13 September, 2013, in Uddevalla, Sweden. The event, which was jointly organized

by the Competence Centre Chalmers Railway Mechanics (CHARMEC) and the

Departments of Applied Mechanics and Applied Acoustics at Chalmers University of

Technology in Gothenburg, Sweden, covered a broad range of topics in the field of railway

noise and vibration, including: prospects, legal regulations and perceptions; wheel and

rail noise; prediction, measurements and monitoring; ground-borne vibration; squeal

noise and structure-borne noise; and aerodynamic noise generated by high-speed trains.

Further topics included: resilient track forms; grinding, corrugation and roughness;

and interior noise and sound barriers. This book, which consists of a collection of peer-reviewed

papers originally submitted to the workshop, not only provides readers with an

overview of the latest developments in the field, but also offers scientists and engineers

essential support in their daily efforts to identify, understand and solve a number of

problems related to railway noise and vibration, and to achieve their ultimate goal of reducing the environmental impact of railway systems.

About This Edition

ISBN: 9783662448311
Publication date: 19th November 2014
Author: International Workshop on Railway Noise
Publisher: Springer an imprint of Springer Berlin Heidelberg
Format: Hardback
Pagination: 717 pages
Series: Notes on Numerical Fluid Mechanics and Multidisciplinary Design
Genres: Engineering: Mechanics of solids
Acoustic and sound engineering
Computer modelling and simulation