A Study of the Factors Influencing the Thermal Radiation Received by Pedestrians from the Electric Vehicle Fire in Roadside Parking Based on PHRR

Technology QH301-705.5 T Physics QC1-999 solid flame model 02 engineering and technology Engineering (General). Civil engineering (General) 7. Clean energy pedestrian evacuation Chemistry 13. Climate action 11. Sustainability electric vehicle fire; solid flame model; pedestrian evacuation 0202 electrical engineering, electronic engineering, information engineering electric vehicle fire TA1-2040 Biology (General) QD1-999
DOI: 10.3390/app13010609 Publication Date: 2023-01-02T09:17:38Z
ABSTRACT
Electric vehicle (EV) fire accidents are caused by multiple factors, including the traffic conditions, parking environment and firefighting facilities, and are a typical public safety issue in cities. Owing to the lack of accurate and quick estimation methods for the EV fire analysis in roadside parking scenarios and their impacts, this study applied the solid flame model to simplify the determination of the dynamic turbulence characteristics of the EV fire flames and proposed a thermal radiation model of an EV thermal runaway combustion flame based on the peak heat release rate. Subsequently, the radiation accuracy of the model near the flame was verified by a simulation and a comparison with the point source flame model, where the safety threshold of the fire accident propagation was determined. Finally, the evacuation strategy for pedestrians in an EV fire was investigated based on the proposed model. From the results, the safe distance of adjacent vehicles and the cumulative value of the pedestrians affected by the thermal radiation of EV fires can be obtained under the influence of the environmental factors. The proposed model can be used to optimize the design of roadside parking lots and guide the formulation of pedestrian emergency plans during an EV fire.
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