Pedestrians' behavior in emergency evacuation:Modeling and simulation

来源 :Chinese Physics B | 被引量 : 0次 | 上传用户:lanke0022
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The social force model has been widely used to simulate pedestrian evacuation by analyzing attractive,repulsive,driving,and fluctuating forces among pedestrians.Many researchers have improved its limitations in simulating behaviors of large-scale population.This study modifies the well-accepted social force model by considering the impacts of interaction among companions and further develops a comprehensive model by combining that with a multi-exit utility function.Then numerical simulations of evacuations based on the comprehensive model are implemented in the waiting hall of the Wulin Square Subway Station in Hangzhou,China.The results provide safety thresholds of pedestrian density and panic levels in different operation situations.In spite of the operation situation and the panic level,a larger friend-group size results in lower evacuation efficiency.Our study makes important contributions to building a comprehensive multi-exit social force model and to applying it to actual scenarios,which produces data to facilitate decision making in contingency plans and emergency treatment. The social force model has been widely used to simulate pedestrian evacuation by analyzing attractive, repulsive, driving, and fluctuating forces among pedestrians. Many researchers have improved its limitations in simulating behaviors of large-scale population. This study modifies the well-accepted social force model by considering the impacts of compactions and compliances and further developing a comprehensive model by combining that with a multi-exit utility function. Numerical simulations of evacuations based on the comprehensive model are implemented in the waiting hall of the Wulin Square Subway Station in Hangzhou , China. The results provide safety thresholds of pedestrian density and panic levels in different operation situations. In spite of the operation situation and the panic level, a larger friend-group size results in lower evacuation efficiency. Our study makes important contributions to building a comprehensive multi-exit social force model and to apply it to actual scenar ios, which produces data to facilitate decision making in contingency plans and emergency treatment.
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