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Is high-speed rail the future?

Once a COVID-19 vaccine is discovered and travel levels return to normal, we do expect to see a renewed interest in rail travel, including high-speed lines, as an alternative to airplanes and cars. Trains are a more cost-effective, environmentally friendly way of moving people between regional cities.



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In a world becoming ever more urbanised, rail travel is well matched to urban needs. High-speed rail can serve as an alternative to short-distance air travel, and conventional and freight rail can complement other transport modes to provide efficient mobility.

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Americans really want high-speed rail. According to a new survey from the American Public Transportation Association, 62 percent of the 24,711 adults surveyed said they would probably or definitely use high-speed rail if it were an option. 11 percent said that they would definitely or probably not use the service.

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On present trends, passenger and freight activity will more than double by 2050. Such growth is a token of social and economic progress. But it carries with it growth in energy demand and in emissions of CO2 and atmospheric pollutants. Greater reliance on rail can cut that growth.

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The Rapi:t is a futuristic electric express train that connects Kansai International Airport (KIX) with Namba Station in Osaka, Japan. Designed by architect Wakabayashi Hiroyuki the six-car train features sleek curves, an aerodynamic front, and circular windows similar to those found on airliners.

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Implementing high-speed rail will keep billions of dollars in the U.S. economy by decreasing the amount of oil that the U.S. consumes. According to the International Association of Railways (UIC), high-speed rail is eight times more energy efficient than airplanes and four times more efficient than automobile use.

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The numbers for high-speed rail can vary anywhere from 20 to 80 million per mile. The big reason why America is behind on high-speed rail is primarily money. We don't commit the dollars needed to build these systems, it's really as simple as that. And it's largely a political issue.

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Levels of autonomous trains While full driverless autonomy is certainly technically possible, and is applied on various routes worldwide, it still accounts for only a tiny percentage of trains running today. New trains are still being designed and built with fully equipped driver cabins.

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China initially relied on high-speed technology imported from Europe and Japan to establish its network. Global rail engineering giants such as Bombardier, Alstom and Mitsubishi were understandably keen to co-operate, given the potential size of the new market and China's ambitious plans.

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Social Benefits In addition to sprawl, a large country like the United States often has vast distances between populated areas. High-speed rail reduces the travelling distance between far flung suburbs and center cities. High-speed rail can also help to ease congestion of urban areas with mega-large populations.

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The Hyperloop system is expected to be a faster and economical alternative to conventional short- range aviation and high-speed rails.

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Length of highspeed railway lines in use worldwide in 2021, by country. As of 2021, China had by far the longest highspeed railway network in the world with almost 40,500 kilometers of highspeed rail lines; the country was followed by Spain and Japan, both with more than 3,000 kilometers of highspeed rail each.

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Thus, during their long construction phases, high-speed rail projects add greenhouse gases. Adding lanes to existing highways also generates greenhouse gases, but to the extent that recycled asphalt is used for road paving climate impacts can be somewhat reduced.

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The first high-speed rail system began operations in Japan in 1964, and is known as the Shinkansen, or “bullet train.” Today, Japan has a network of nine high speed rail lines serving 22 of its major cities, stretching across its three main islands, with three more lines in development.

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