Resumen:
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[EN] Introduction: The strong rise in modes of travel commonly referred to as micromobility has changed the mobility patterns and lifestyles in cities worldwide, especially after the COVID-19 pandemic. It has led to a ...[+]
[EN] Introduction: The strong rise in modes of travel commonly referred to as micromobility has changed the mobility patterns and lifestyles in cities worldwide, especially after the COVID-19 pandemic. It has led to a significant increase in the number of crashes involving these types of vehicles, especially bicycles and stand-up e-scooters. The risk of crashes is higher at intersections where motor-vehicles perform a turning maneuver crossing a bike lane.
Method: The consequences of a passenger car-to-micromobility vehicle side-impact crashes, considering both bicycle and e-scooter, were studied based on the results of the simulation of several scenarios with PC-Crash software. Two injury criteria were applied: Head Injury Criterion (HIC15) and 3 ms chest acceleration criterion.
Results: When motor-vehicle speed is lower than 50 km/h, the 3 ms chest acceleration never exceeds the 60 g threshold. However, at 50 km/h, it is close to 50 g in the case of e-scooter rides. At this speed, HIC15 is considerably greater than 1000, both for bicycles and for e-scooters, and the safety margin of 700 is exceeded at 45 km/h for e-scooters.
Conclusions: In case of motor vehicle-to-micromobility vehicle side-impact crash, riding a bicycle is safer than riding an e-scooter since the observed HIC15 experienced by the cyclists is lower than that experienced by the e-scooter rider when motor vehicle speed is greater than 30 km/h.
Practical applications: To reduce micromobility users injury risk at intersections, motor vehicle speed limit should be equal or lower than 40 km/h. At this impact speed, the activation of hood or bumper airbags could be justified.
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Agradecimientos:
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This research is part of the research project PID2019-111744RB-I00, funded by MCIN/AEI/10.13039/501100011033.Likewise, this research has been partially funded by the European Union-NextGenerationEU (RD 289/2021) thanks to ...[+]
This research is part of the research project PID2019-111744RB-I00, funded by MCIN/AEI/10.13039/501100011033.Likewise, this research has been partially funded by the European Union-NextGenerationEU (RD 289/2021) thanks to the granting of a "Margarita Salas" grant to Almudena Sanjurjo, researcher at the Universidad Politecnica de Madrid (UPM) , to carry out a stay at the Universitat Politecnica de Valencia (UPV) .Finally, funding for open access charge: CRUE-Universitat Politecnica de Valencia.
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