Development of a Bridge Bumper to Protect Bridge Girders from Overheight Vehicle Impacts

Bridges with low clearance are vulnerable to collision with overheight vehicles. Collisions of overheight vehicles can cause fatalities and injuries to drivers and passengers of overheight vehicles, and damage to bridge girders. The repair of damaged bridges can be costly and time consuming. This article investigates the feasibility of developing a bridge bumper that minimizes the physical injuries and the likelihood of fatalities and protects the structural elements of bridges by absorbing the impact energy. This paper presents results of small-scale impact experiments using the proposed bridge bumper with several options of energy-absorbing materials to protect a reinforced concrete beam. Finite element (FE)analyses are conducted to simulate small-scale impact experiments. Optimization of the FE model is carried out for the response quantities of interest with respect to the geometrical parameters and material properties of the proposed bridge bumper. Such analysis can guide the design of an optimal bridge bumper that maximizes the energy dissipation and minimizes the damage to the bridge girder and the likelihood of fatalities and injuries. A possible full-scale implementation of the proposed bridge bumper is also detailed.