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With the arrival of the privatised railway and the nature of railway operation, the delivery of a safe service to the customer got much more complex. In place of the unified nationalised network, more than 100 different companies were now involved in the day-to-day running of the railway network. Each chapter in this book deals with the organisation of the contemporary railway, the principles behind the safe operation of railways, track and signalling, passenger stations, passenger train operation, freight train operation, service provision and planning, safety and much else.
Michigan Railway Company: The Northern and Southern Divisions, the first comprehensive history of the Michigan United Railway Company, traces the rise and fall of Michigan’s most significant electric railway. This volume covers the company’s founding in local rail-based public transportation systems in Lansing, Jackson, Battle Creek, Kalamazoo, and Owosso-Corunna and ends with its eventual demise, abandoned prior to the stock market crash of 1929. Norman L. Krentel follows the fragments of lines in lower Michigan, which came together to form the MUR. He examines the interurban lines, which were broken down into five divisions, each with a separate superintendent. These divisions were Northern and Southern, which had formerly been Michigan United Railways; Northwestern, which had been Grand Rapids, Holland, and Chicago Railway; Western; and Northeastern. This also explores how electric railway history is intertwined with the state of Michigan. The interurban electric rail system supported automobile manufacturing, allowing for the shipment of parts supplies, and finished automobiles through Michigan, Indiana, Ohio, and Kentucky. Major auto plants like REO and Oldsmobile had rail sidetracks served by Michigan Railway’s interurban freight trains. Electric railway history is thus an essential, previously overlooked factor in Michigan’s industrial development.
Incorporates More Than 25 Years of Research and ExperienceRailway Transportation Systems: Design, Construction and Operation presents a comprehensive overview of railway passenger and freight transport systems, from design through to construction and operation. It covers the range of railway passenger systems, from conventional and high speed inter
Over the past decade, China has built 25,000 km of dedicated highspeed railway—more than the rest of the world combined. What can we learn from this remarkable experience? China’s High-Speed Rail Development examines the Chinese experience to draw lessons for countries considering investing in high-speed rail. The report scrutinizes the planning and delivery mechanisms that enabled the rapid construction of the high-speed rail system. It highlights the role of long-term planning, consistent plan execution, and a joint venture structure that ensures active participation of provincial and local governments in project planning and financing. Traffic on China’s high-speed trains has grown to 1.7 billion passengers a year. The study examines the characteristics of the markets for which high-speed rail is competitive in China. It discusses the pricing and service design considerations that go into making high-speed rail services competitive with other modes and factors such as good urban connectivity that make the service attractive to customers. One of the most remarkable aspects of the Chinese experience is the rapid pace of high-quality construction. The report looks at the role of strong capacity development within and cooperation among China Railway Corporation, rail manufacturers, universities, research institutions, laboratories, and engineering centers that allowed for rapid technological advancement and localization of technology. It describes the project delivery structures and incentives for delivering quality and timely results. Finally, the report analyzes the financial and economic sustainability of the investment in high-speed rail. It finds that a developing country can price high-speed rail services affordably and still achieve financial viability, but this requires very high passenger density. Economic viability similarly depends on high passenger density.