Modern trends in designing high-speed trains
Increased advantages of railway transportation systems over other types of transportation systems in the past sixty years have been a result of an intensive development of the new generations of high-speed trains. Not only do these types of trains comply with the need for increased speed of transpor...
Main Authors: | , , |
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Format: | Article |
Language: | English |
Published: |
Savez inženjera i tehničara Srbije
2015-01-01
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Series: | Tehnika |
Subjects: | |
Online Access: | http://scindeks-clanci.ceon.rs/data/pdf/0040-2176/2015/0040-21761503455G.pdf |
Summary: | Increased advantages of railway transportation systems over other types of transportation systems in the past sixty years have been a result of an intensive development of the new generations of high-speed trains. Not only do these types of trains comply with the need for increased speed of transportation and make the duration of the journey shorter, but they also meet the demands for increased reliability, safety and direct application of energy efficiency to the transportation system itself. Along with increased train speed, the motion resistance is increased as well, whereby at speeds over 200 km/h the proportion of air resistance becomes the most dominant member. One of the most efficient measures for reducing air resistance, as well as other negative consequences of high-speed motion, is the development of the aerodynamic shape of the train. This paper presents some construction solutions that affect the aerodynamic properties of high-speed trains, first and foremost, the nose shape, as well as the similarities and differences of individual subsystems necessary for the functioning of modern high-speed rail systems. We analysed two approaches to solving the problem of the aerodynamic shape of the train and the appropriate infrastructure using the examples of Japan and France. Two models of high-speed trains, Shinkansen (Japan) and TGV, i.e. AGV (France), have been discussed. |
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ISSN: | 0040-2176 2560-3086 |