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First published January 2000

Validation of Left-Turn Delay at Two-Way Stop-Controlled Intersections

Abstract

Control delay for left-turning vehicles at unsignalized intersections was observed in the field and compared with average control delay calculated from the methodologies presented in the 1997 update of the Highway Capacity Manual (HCM). Unsignalized intersections with two-way left-turn lanes on the major street were observed in the peak and offpeak hours, and control delays were recorded for the one-stage and twostage left-turn processes. Next, the methodologies presented in the HCM were used to calculate the control delay for both processes and compared with the observed data. These comparisons were used as the basis for validation of the HCM methodologies regarding left-turn control delay at unsignalized intersections. From the comparisons, the calculated delay closely corresponds with the observed data, with a total approach volume at the intersection of approximately 2,500 vehicles per hour or less. Once the total approach volume increases above this level, the calculated values rapidly increase and the actual observed control delays gradually increase at a much lower rate. As a result, the observed and calculated delays are different when the intersection handles more than 2,500 approach vehicles in an hour. Statistical analyses were performed on the data to determine if the average observed control delay was related to the calculated control delay. Statistically, the observed control delay and the calculated control delay at the 95 percent confidence level show that the two data sets yield similar results for off-peak conditions. However, during the peak hour, when the total approach volumes are higher, the 95 percent confidence interval yields different results. Hence, the HCM procedures produce, on average, greater control delay estimates than the field observations when the total approach volumes are high.

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References

1. Special Report 209: Highway Capacity Manual (1997 update). TRB, National Research Council, Washington, D.C., 1998.
2. Troutbeck R. Estimating the Critical Acceptance Gap for Traffic Movements. Research Report 95–2. Queensland University of Technology, Australia, 1992.
3. McShane W., and Roess R. Traffic Engineering. Prentice-Hall, Englewood Cliffs, N.J., 1990.

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Article first published: January 2000
Issue published: January 2000

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© 2000 National Academy of Sciences.
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Authors

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Sarah A. Simpson
United Civil Group Corporation, 2803 North 7th Avenue, #16, Phoenix, AZ 85007
Judson S. Matthias
Arizona State University, PO Box 875306, Tempe, AZ 85287

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This article was published in Transportation Research Record: Journal of the Transportation Research Board.

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Crossref: 3

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  2. Operational Performance at Two-Way Stop-Controlled Intersections
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