EVALUATION OF OPERATIONAL EFFECTS OF FREEWAY RECONSTRUCTION ACTIVITIES
Jianfei Zhang, Lannon Leiman, Adolf D May
Abstract
Jianfei Zhang, Lannon Leiman, Adolf D May
Abstract
To better evaluate the operational effects of freeway maintenance/reconstruction activities, a new methodology has been developed. This methodology takes traffic demand, freeway geometry, and maintenance/reconstruction plans as input and uses the modified FREQ simulation model, FREQ10PC, to quantitatively predict freeway performance under different maintenance/reconstruction plans. Then a comprehensive evaluation of these plans can be carried out based on the predicted measures of performance. This paper describes the new methodology, the FREQ model, its modification and verification, and a literature search and survey of experts on freeway capacities through work zones. Descriptions of two major applications of the methodology, on for the San Francisco-Oakland Bay Bridge and the other for Interstate 80 (I-80) northeast of that bridge, are provided. The Bay Bridge application was designed to assess the operational effects of different maintenance plans, and the I-80 application was used to evaluate the traffic impacts of different nighttime lane closure alternatives during reconstruction activities. The results reveal that operational effects are extremely sensitive to lane closure schedules and plans and to freeway design elements. The results also show that the new methodology is effective in evaluating operational effects of freeway maintenance/reconstruction activities.
OpenAlex reports 9 citations for this work. Citation counts describe recorded attention and do not establish research quality.
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.
To better evaluate the operational effects of freeway maintenance/reconstruction activities, a new methodology has been developed. This methodology takes traffic demand, freeway geometry, and maintenance/reconstruction plans as input and uses the modified FREQ simulation model, FREQ10PC, to quantitatively predict freeway performance under different maintenance/reconstruction plans. Then a comprehensive evaluation of these plans can be carried out based on the predicted measures of performance. This paper describes the new methodology, the FREQ model, its modification and verification, and a literature search and survey of experts on freeway capacities through work zones. Descriptions of two major applications of the methodology, on for the San Francisco-Oakland Bay Bridge and the other for Interstate 80 (I-80) northeast of that bridge, are provided. The Bay Bridge application was designed to assess the operational effects of different maintenance plans, and the I-80 application was used to evaluate the traffic impacts of different nighttime lane closure alternatives during reconstruction activities. The results reveal that operational effects are extremely sensitive to lane closure schedules and plans and to freeway design elements. The results also show that the new methodology is effective in evaluating operational effects of freeway maintenance/reconstruction activities.
Key concepts: Bridge (graph theory), Transport engineering, Highway maintenance, Closure (psychology), Bridge maintenance, Work (physics), Computer science, Engineering