Selecting the Most Feasible Construction Phasing Plans for Urban Highway Rehabilitation Projects
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Despite the abundance of research that has aimed to understand the effects of highway work zones, very little definitive<br> information is available concerning the determination of work zone length (WZL). Quantitative studies that holistically<br> model WZL are very rare. To fill this gap, this study identifies critical factors affecting WZL and develops decision<br> support models that determine the optimal WZL in a balanced tradeoff between motorists’ inconvenience due to traffic<br> disruption and their opportunity cost. A high-confidence dataset was created by conducting a series of scheduling and<br> traffic simulations and analyses. The results revealed that traffic loading and work zone duration are critical factors,<br> with traffic loading at approximately 41,000 vehicles-per-day being an important benchmarking point. Based on these<br> findings, a decision support model was developed to determine the most feasible WZL. As the first of its kind, this<br> study will help state transportation agencies devise sounder construction phasing plans by providing a point of<br> reference when establishing WZL in a viable way to minimize traffic disruption during construction.



