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Slab Track Test and Demonstration for Shared Freight and High-Speed Passenger Service

Donald Plotkin, Theodore R. Sussmann

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Abstract

As part of the Next Generation High Speed Rail Program, two types of concrete slab track were tested to determine their ability to retain the exacting track geometry tolerances required for high speed rail operations while also withstanding the high axle loads of main line freight service. These two designs were proposed options for locations where future high speed passenger service may need to share track with heavy freight service, particularly in urban areas where available rights-of-way are limited and where access for maintenance may be difficult. The test and demonstration was conducted at the Transportation Technology Center (TTC) near Pueblo, CO, from July 2003 to July 2006, as a cooperative effort between the Federal Railroad Administration (FRA) and the Portland Cement Association (PCA). The demonstration section was 500 feet long, with 250 feet of direct fixation slab track (DFST) and 250 feet of independent dual block track (IDBT). During the test and demonstration, a train with 39-ton axle loads was run repeatedly over the two concrete slab track sections. Over 3 years, a total of 170 million gross tons (MGT) of traffic was accumulated. Various measurements taken during and at the end of the demonstration indicated that FRA Class-9 track geometry tolerances (the highest track class, for speeds up to 200 mph) were successfully retained. In addition, no signs of structural distress appeared.

About this research paper

What this paper is about

As part of the Next Generation High Speed Rail Program, two types of concrete slab track were tested to determine their ability to retain the exacting track geometry tolerances required for high speed rail operations while also withstanding the high axle loads of main line freight service. These two designs were proposed options for locations where future high speed passenger service may need to share track with heavy freight service, particularly in urban areas where available rights-of-way are limited and where access for maintenance may be difficult. The test and demonstration was conducted at the Transportation Technology Center (TTC) near Pueblo, CO, from July 2003 to July 2006, as a cooperative effort between the Federal Railroad Administration (FRA) and the Portland Cement Association (PCA). The demonstration section was 500 feet long, with 250 feet of direct fixation slab track (DFST) and 250 feet of independent dual block track (IDBT). During the test and demonstration, a train with 39-ton axle loads was run repeatedly over the two concrete slab track sections. Over 3 years, a total of 170 million gross tons (MGT) of traffic was accumulated. Various measurements taken during and at the end of the demonstration indicated that FRA Class-9 track geometry tolerances (the highest track class, for speeds up to 200 mph) were successfully retained. In addition, no signs of structural distress appeared.

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Available abstract

As part of the Next Generation High Speed Rail Program, two types of concrete slab track were tested to determine their ability to retain the exacting track geometry tolerances required for high speed rail operations while also withstanding the high axle loads of main line freight service. These two designs were proposed options for locations where future high speed passenger service may need to share track with heavy freight service, particularly in urban areas where available rights-of-way are limited and where access for maintenance may be difficult. The test and demonstration was conducted at the Transportation Technology Center (TTC) near Pueblo, CO, from July 2003 to July 2006, as a cooperative effort between the Federal Railroad Administration (FRA) and the Portland Cement Association (PCA). The demonstration section was 500 feet long, with 250 feet of direct fixation slab track (DFST) and 250 feet of independent dual block track (IDBT). During the test and demonstration, a train with 39-ton axle loads was run repeatedly over the two concrete slab track sections. Over 3 years, a total of 170 million gross tons (MGT) of traffic was accumulated. Various measurements taken during and at the end of the demonstration indicated that FRA Class-9 track geometry tolerances (the highest track class, for speeds up to 200 mph) were successfully retained. In addition, no signs of structural distress appeared.

Key concepts: Track (disk drive), Slab, Axle, Track geometry, Engineering, Transport engineering, Service (business), Block (permutation group theory)

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