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Technical Paper

A Field Evaluation of the S-1 Pedestrian Guard: Transit and Shuttle Bus Applications

1998-11-16
982775
The need to reduce the injury to pedestrians that are run over or pinned beneath a bus is an ongoing concern for transit authorities and other operators. Occasionally, a pedestrian will be run over by the right rear wheel while exiting the rear door. This accident occurs in various scenarios such as when people exit the bus and become entangled in the door grab bars, or when they fall between the curb and the bus while it approaches or departs. With all scenarios, the S-1 Gard acts similar to a cow catcher, pushing the fallen pedestrian out and away from the rear tire. This paper will: outline various incident scenarios, evaluate the S-1 Gard's performance in a city environment, review installation of the guard as well as its maintenance requirements. The purpose of this paper is to bring to the attention of transit authorities and shuttle operators the overall value of this device.
Technical Paper

An Experimental Method for Determining Occupant Loading in Heavy Trucks and Equipment

1993-11-01
933049
With the use of digital audio tape recorders and piezo accelerometers, a practical field-ready method of determining occupant loading has been developed for heavy truck and equipment ride evaluation. The primary objective in determining ride quality is to verify the accelerations transferred to the occupant through the seat. These accelerations can then be compared to occupant threshold limits to assist the engineer in determining ride quality. The acquisition of acceleration data can be done incrementally for each component of the vehicle, from the ground up to the seat cushion. This allows for an in-depth analysis of suspension and frame components which can then be used to fine tune the design. A secondary use of this method is to evaluate the interaction of contributing components to overall ride quality. Specifically, tires, shock absorbers, air bellows, spring rates, fifth wheel position and front axle position can be evaluated with this field ready method.
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