Auxiliary turning lanes at urban intersections
Christopher T. Marcus, Randy B. Machemehl, Clyde E. Lee
Abstract
Christopher T. Marcus, Randy B. Machemehl, Clyde E. Lee
Abstract
The capacity of an intersection is affected significantly by the relative proportion of straight-through and turning vehicles in each approaching lane. In many situations - particularly at signalized intersections - traffic throughput on an approach can be increased by adding auxiliary lanes to accommodate only turning vehicles. Techniques for designing left-turn and right-turn lanes at intersections and evaluating the related traffic performance are needed. Guidelines for determining the number and length of left-turn lanes needed at signalized intersections have been developed. The guidelines are implemented primarily through a microcomputer program called Left-Turning Movement Analysis Program (LTMAP). This program provides the engineer/user with an interactive means for entering descriptive data concerning intersection turn- lane configuration, traffic volumes, vehicle classes, traffic behavior parameters, and signal timing. A range of descriptive quantitative information about expected queue lengths, likely signal-cycle failures, volume-to-capacity statistics, and various delay estimates is produced immediately by the program. Different intersection operational situations can be compared quickly and easily in this way. Equivalence factors for converting right-turn traffic volumes to equivalent straight-through volumes at stop-sign controlled intersections are presented, and guides for determining the length of right-turn bays at a signalized intersection are shown graphically. These tools aid the engineer in designing and analyzing auxiliary-lane treatments required for various intersection conditions.
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The capacity of an intersection is affected significantly by the relative proportion of straight-through and turning vehicles in each approaching lane. In many situations - particularly at signalized intersections - traffic throughput on an approach can be increased by adding auxiliary lanes to accommodate only turning vehicles. Techniques for designing left-turn and right-turn lanes at intersections and evaluating the related traffic performance are needed. Guidelines for determining the number and length of left-turn lanes needed at signalized intersections have been developed. The guidelines are implemented primarily through a microcomputer program called Left-Turning Movement Analysis Program (LTMAP). This program provides the engineer/user with an interactive means for entering descriptive data concerning intersection turn- lane configuration, traffic volumes, vehicle classes, traffic behavior parameters, and signal timing. A range of descriptive quantitative information about expected queue lengths, likely signal-cycle failures, volume-to-capacity statistics, and various delay estimates is produced immediately by the program. Different intersection operational situations can be compared quickly and easily in this way. Equivalence factors for converting right-turn traffic volumes to equivalent straight-through volumes at stop-sign controlled intersections are presented, and guides for determining the length of right-turn bays at a signalized intersection are shown graphically. These tools aid the engineer in designing and analyzing auxiliary-lane treatments required for various intersection conditions.
Key concepts: Intersection (aeronautics), Queue, Transport engineering, Computer science, Headway, Highway Capacity Manual, Equivalence (formal languages), Range (aeronautics)