
Railway Engineering Technology
Developments and Innovations
by V. M. Ravindra Kumar, K. P. Vineesh, Sunil Kumar Sharma
1st Edition
Publisher: CRC Press
Book Details
| Print ISBN | 9781032836508 |
| eText ISBN | 9781040427842 |
| Publisher | CRC Press |
| Publishing Year | 2025 |
| Edition | 1st Edition |
| Language | English |
| Pages | 338 |
Railway Engineering Technology, 1st Edition, gathers contemporary technical research focused on rail infrastructure design, rolling stock performance, and network operations. The volume establishes analytical frameworks, computational methods, and mechanical evaluation strategies to assist engineering teams that design, construct, and manage modern rail transit systems.
The text explains the application of digital twin technology across railway networks to enable predictive maintenance, support performance optimization, and enhance overall system efficiency. It details rail-wheel traction characteristics under diverse environmental conditions established during full-scale test procedures. In addition, the text emphasizes sustainable engineering practices, energy-efficient technologies, and systematic environmental impact assessments tailored to rail transportation networks.
Featuring 104 black-and-white illustrations throughout its 338 pages, this publication provides comprehensive analytical diagrams, structural schematics, and empirical data for applied technical evaluation. The material directly supports academic researchers, design specialists, and practicing professionals working across railway engineering, mechanical engineering, and transportation systems management.
Table of Contents
Chapter 1: Railway Wheels Failure Mechanism and Locally Resonant Bandgap for Vibration Isolation
Chapter 2: Railway Axles
Chapter 3: Rail–Wheel Interaction
Chapter 4: Digital Twins in Railway Systems
Chapter 5: Regenerative Braking System for Railways
Chapter 6: Sustainability in Railway Engineering
Chapter 7: Adaptive Sliding Mode Controller Development to Improve Rail Network Efficiency through Virtual Coupling: A Case Study Evidence
Chapter 8: Railway Transition Zones
Chapter 9: Navigating the Cybersecurity Landscape in Railway Infrastructure: Measures, Challenges, and Innovation
Chapter 10: Design and Manufacturing of Railway Track
Chapter 11: Formulation of a Metamodel-Based Multi-Objective Optimisation Problem for a Rail Vehicle’s Dynamic Response
Chapter 12: Railway Track System and Dynamics
Chapter 13: Case Studies of Failures in Railway Engineering, High-Speed Rail Innovations, and Challenges in Metro Trains
Chapter 14: Frictional Braking in Trains
Chapter 15: Railway Wheel Technology and Evolution of Temperature in Railway Wheels
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