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Contents: (1) Intro.; (2) What is High Speed Rail (HSR)?; (3) HSR Options; (4) Components of a HSR System: Conventional HSR; Track; Signal and Commun. Networks; Magnetic Levitation; (5) HSR In: Japan; France; Germany; Spain; China; (6) Background of Intercity Passenger Rail in the U.S.; (7) Previous Efforts in the U.S.; (8) Recent Congress. Initiatives to Promote HSR; (9) Potential Benefits: Alleviating Highway and Airport Congestion; Alleviating Pollution and Reducing Energy Consumption by the Transport. Sector; Promoting Econ. Develop.; Improving Transport. Safety; Providing a Choice of Modes; Making the Transport. System More Reliable; (10) Infrastructure and Operating Costs; (11) Ridership Potential; (12) Funding Consider.
This Policy Focus Report was a product of the Lincoln Institute of Land Policy, the Regional Plan Association and their joint venture America 2050. The Lincoln Institute of Land Policy has been engaged in a series of projects with the Regional Plan Association for more than a decade. The partnership spawned the national initiative known as America 2050, which is aimed at meeting the infrastructure, economic development and environmental challenges of the nation, in preparation for a population increase of about 130 million by 2050. A major focus of America 2050 is the emergence of megaregions - large networks of metropolitan areas, where most of the population growth by mid-century will take place. Examples of megaregions are the Northeast Megaregion, from Boston to Washington, or Southern California, from Los Angeles to Tijuana, Mexico. High-speed rail is capable of linking employment centers and population hubs in corridors up to 600 miles in length in 11 U.S. megaregions.This Policy Focus Report was a product of the Lincoln Institute of Land Policy, the Regional Plan Association and their joint venture America 2050. The Lincoln Institute of Land Policy has been engaged in a series of projects with the Regional Plan Association for more than a decade. The partnership spawned the national initiative known as America 2050, which is aimed at meeting the infrastructure, economic development and environmental challenges of the nation, in preparation for a population increase of about 130 million by 2050. A major focus of America 2050 is the emergence of megaregions - large networks of metropolitan areas, where most of the population growth by mid-century will take place. Examples of megaregions are the Northeast Megaregion, from Boston to Washington, or Southern California, from Los Angeles to Tijuana, Mexico. High-speed rail is capable of linking employment centers and population hubs in corridors up to 600 miles in length in 11 U.S. megaregions.
The provision of $8 billion for intercity passenger rail projects in the 2009 American Recovery and Reinvestment Act (ARRA; P.L. 111-5) reinvigorated efforts to expand intercity passenger rail transportation in the United States. The Obama Administration subsequently announced that it would ask Congress to provide $1 billion annually for high speed rail (HSR) projects. This initiative was reflected in the President's budgets for FY2010 through FY2013. Congress approved $2.5 billion for high speed and intercity passenger rail in FY2010 (P.L. 111-117), but zero in FY2011 (P.L. 112-10) and FY2012 (P.L. 112-55). In addition, the FY2011 appropriations act rescinded $400 million from prior year unobligated balances of program funding. There are two main approaches to building high speed rail (HSR): (1) improving existing tracks and signaling to allow trains to reach speeds of up to 110 miles per hour (mph), generally on track shared with freight trains; and (2) building new tracks dedicated exclusively to high speed passenger rail service, to allow trains to travel at speeds of 200 mph or more. The potential costs, and benefits, are relatively lower with the first approach and higher with the second approach. Much of the federal funding for HSR to date has focused on improving existing lines in five corridors: Seattle-Portland; Chicago-St. Louis; Chicago-Detroit; the Northeast Corridor (NEC); and Charlotte-Washington, DC. Most of the rest of the money is being used for a largely new system dedicated to passenger trains between San Francisco and Los Angeles, on which speeds could reach up to 220 mph. Plans for HSR in some states were shelved by political leaders opposed to the substantial risks such projects entail, particularly the capital and operating costs; the federal funds allocated to those projects were subsequently redirected to other HSR projects. Estimates of the cost of constructing HSR vary according to train speed, the topography of the corridor, the cost of right-of-way, and other factors. Few if any HSR lines anywhere in the world have earned enough revenue to cover both their construction and operating costs, even where population density is far greater than anywhere in the United States. Typically, governments have paid the construction costs, and in many cases have subsidized the operating costs as well. These subsidies are often justified by the social benefits ascribed to HSR in relieving congestion, reducing pollution, increasing energy efficiency, and contributing to employment and economic development. It is unclear whether these potential social benefits are commensurate with the likely costs of constructing and operating HSR. Lack of long-term funding represents a significant obstacle to HSR development in the United States. The federal government does not have a dedicated funding source for HSR, making projects that can take years to build vulnerable to year-to-year changes in discretionary budget allocations.~
High-speed Rail (HSR) is a technological transportation advance that has raised the interest of policy makers and researchers worldwide. The study of High-speed Rail is a recent phenomenon but has received increasing attention due to the extension of this mode of transportation around the globe. Evaluating High-Speed Rail contains some of the most recent and cutting edge studies on HSR from different disciplines. The book is organized around a variety of key topics related to the evaluation of High Speed Rail projects and experiences. These topics include: the economic appraisal and evaluation of High-Speed Rail projects; the evaluation of indirect and direct effects of High-Speed Rail; its territorial, redistributive and environmental impacts; its contribution or limitation to urban growth; and the management of challenges created by the arrival of High-Speed Rail lines to core cities. It also covers the contribution of High-Speed Rail to tourism and its impact on intermodal competition, with especial consideration to air transportation. Chapters analyse the expected effects of introducing on-track competition and designing public-private contracts to develop new lines. This cutting-edge volume offers rigorous analysis from top researchers in the field with a clear intention to deliver policy implications and provide the latest analysis on the impact of High Speed Rail. This book is suitable for students and academics interested in transportation infrastructure, economic impacts of public investments, mobility, planning and urban affairs, as well as researchers and policy makers in the transportation and infrastructure sector.
This book is intended to help fill some of the technical and policy information gaps identified earlier as sources constraining further development of high speed rail (HSR) systems in the US. It addresses the key aspects of planning, development and implementation of HSR systems.
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.
Mobility is fundamental to economic and social activities such as commuting, manufacturing, or supplying energy. Each movement has an origin, a potential set of intermediate locations, a destination, and a nature which is linked with geographical attributes. Transport systems composed of infrastructures, modes and terminals are so embedded in the socio-economic life of individuals, institutions and corporations that they are often invisible to the consumer. This is paradoxical as the perceived invisibility of transportation is derived from its efficiency. Understanding how mobility is linked with geography is main the purpose of this book. The third edition of The Geography of Transport Systems has been revised and updated to provide an overview of the spatial aspects of transportation. This text provides greater discussion of security, energy, green logistics, as well as new and updated case studies, a revised content structure, and new figures. Each chapter covers a specific conceptual dimension including networks, modes, terminals, freight transportation, urban transportation and environmental impacts. A final chapter contains core methodologies linked with transport geography such as accessibility, spatial interactions, graph theory and Geographic Information Systems for transportation (GIS-T). This book provides a comprehensive and accessible introduction to the field, with a broad overview of its concepts, methods, and areas of application. The accompanying website for this text contains a useful additional material, including digital maps, PowerPoint slides, databases, and links to further reading and websites. The website can be accessed at: http://people.hofstra.edu/geotrans This text is an essential resource for undergraduates studying transport geography, as well as those interest in economic and urban geography, transport planning and engineering.
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