Vehicle Weights And Dimensions Study
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ITF Research Reports Moving Freight with Better Trucks Improving Safety, Productivity and Sustainability
Author | : OECD |
Publisher | : OECD Publishing |
Total Pages | : 361 |
Release | : 2011-04-19 |
Genre | : |
ISBN | : 9282102963 |
This report identifies potential improvements in terms of more effective safety and environmental regulation for trucks, backed by better systems of enforcement, and identifies opportunities for greater efficiency and higher productivity.
Vehicle Weights and Dimensions Study
Author | : J. T. Christison |
Publisher | : |
Total Pages | : 195 |
Release | : 1986 |
Genre | : Pavements |
ISBN | : 9780919098855 |
Technologies and Approaches to Reducing the Fuel Consumption of Medium- and Heavy-Duty Vehicles
Author | : National Research Council |
Publisher | : National Academies Press |
Total Pages | : 251 |
Release | : 2010-07-30 |
Genre | : Science |
ISBN | : 0309159474 |
Technologies and Approaches to Reducing the Fuel Consumption of Medium- and Heavy-Duty Vehicles evaluates various technologies and methods that could improve the fuel economy of medium- and heavy-duty vehicles, such as tractor-trailers, transit buses, and work trucks. The book also recommends approaches that federal agencies could use to regulate these vehicles' fuel consumption. Currently there are no fuel consumption standards for such vehicles, which account for about 26 percent of the transportation fuel used in the U.S. The miles-per-gallon measure used to regulate the fuel economy of passenger cars. is not appropriate for medium- and heavy-duty vehicles, which are designed above all to carry loads efficiently. Instead, any regulation of medium- and heavy-duty vehicles should use a metric that reflects the efficiency with which a vehicle moves goods or passengers, such as gallons per ton-mile, a unit that reflects the amount of fuel a vehicle would use to carry a ton of goods one mile. This is called load-specific fuel consumption (LSFC). The book estimates the improvements that various technologies could achieve over the next decade in seven vehicle types. For example, using advanced diesel engines in tractor-trailers could lower their fuel consumption by up to 20 percent by 2020, and improved aerodynamics could yield an 11 percent reduction. Hybrid powertrains could lower the fuel consumption of vehicles that stop frequently, such as garbage trucks and transit buses, by as much 35 percent in the same time frame.
Vehicle Weight and Dimension Limitations, Hearings Before the Subcommittee on Roads ... 91-1, on H.R. 11870, H.R. 11619
Author | : United States. Congress. House. Public Works |
Publisher | : |
Total Pages | : 912 |
Release | : 1969 |
Genre | : |
ISBN | : |
Tires and Passenger Vehicle Fuel Economy
Author | : |
Publisher | : Transportation Research Board |
Total Pages | : 178 |
Release | : 2006 |
Genre | : Reference |
ISBN | : 0309094216 |
Vehicle Weight and Dimension Limitations
Author | : United States. Congress. House. Committee on Public Works. Subcommittee on Roads |
Publisher | : |
Total Pages | : 864 |
Release | : 1969 |
Genre | : Highway law |
ISBN | : |
Heavy-Duty Wheeled Vehicles
Author | : Boris Nikolaevich Belousov |
Publisher | : SAE International |
Total Pages | : 579 |
Release | : 2014-01-27 |
Genre | : Technology & Engineering |
ISBN | : 0768080681 |
Heavy-duty wheeled vehicles (HDWVs) are all-wheel-drive vehicles that carry 25 tons or more and have three or more axles. They transport heavy, bulky cargo such as raw minerals, timber, construction materials, pre-fabricated modules, weapons, combat vehicles, and more. HDWVs are used in a variety of industries (mining, logging, construction, energy) and are critical to a country’s economy and defense. These vehicles have unique development requirements due to their high loads, huge dimensions, and specific operating conditions. Hauling efficiencies can be improved by increasing vehicle load capacity; however capacities are influenced by legislation, road limits, and design. Designing HDWVs differs from other multi-purpose all-wheel-drive vehicles. The chassis must be custom-designed to suit the customer’s particular purpose. The number of axles is another variable, as well as which ones are driving and which are driven. Tires are also customizable. Translated by SAE from Russian, this book narrates the history of HDWVs and presents the theory and calculations required to design them. It summarizes results of the authors’ academic research and experience and presents innovative technical solutions used for electric and hydrostatic transmissions, steering systems, and active safety of these vehicles. The book consists of three parts. Part one covers HDWV design history and general design methods, including basic vehicle design, and evaluating HDWV use conditions. Part one also covers general operation requirements and consumer needs, and a brief analysis of structural components of existing HDWVs and prototypes. Part two outlines information needs for designing HDWVs. Part three reviews basic theory and calculation of innovative technical solutions, as well as special requirements for component parts. This comprehensive title provides the following information about HDWVs: • History of design and manufacture. • Manufacturers’ summary design data. • Background data on sample vehicles. • Component calculation examples. • Overview of motion theory, which is useful in design and placement of bulky cargo.