PREDICTING TRAFFIC IMPACTS AT TWO-LANE HIGHWAY WORK ZONES. FINAL REPORT
Mark Cassidy, Young Tae Son
Abstract
Mark Cassidy, Young Tae Son
Abstract
Maintenance or reconstruction activity on a two-lane highway often requires a lane closure. The implementation of one-way traffic control, required to maintain traffic flow throughout the work zone, typically produces significant motorist delay. This report describes the adaptation and application of queueing models, originally derived for intersections controlled by vehicle-actuated traffic signals, to estimate delay at two-lane highway work zones. The models estimate expected delay as a function of directional traffic demand rates, work zone physical length and observed traffic measures. Validation efforts using simulation suggest that the models accurately predict the impacts of two-lane highway lane closures.
A significance statement is not available in the OpenAlex record.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Maintenance or reconstruction activity on a two-lane highway often requires a lane closure. The implementation of one-way traffic control, required to maintain traffic flow throughout the work zone, typically produces significant motorist delay. This report describes the adaptation and application of queueing models, originally derived for intersections controlled by vehicle-actuated traffic signals, to estimate delay at two-lane highway work zones. The models estimate expected delay as a function of directional traffic demand rates, work zone physical length and observed traffic measures. Validation efforts using simulation suggest that the models accurately predict the impacts of two-lane highway lane closures.
Key concepts: Traffic flow (computer networking), Work (physics), Transport engineering, Work zone, Computer science, Queueing theory, Engineering, Computer network