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Finite element reconstruction of real-world pedestrian accidents using THUMS pedestrian model

机译:使用Thums行人模型的现实世界步行事故有限元重建

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摘要

Finite element (FE) human body models, though providing effective means for vehicle design and assessment from the safety point of view, are still under development stage due to their limited validation. These models have been validated for cadaveric test data available in the literature for different parts. However, it has been identified that the reconstruction of the real-world accident using these FE models is required in order to evaluate their biofidelity and robustness for real crash scenarios. Hence, in the present study FE reconstruction of three real-world pedestrian accidents from RAIDS, UK database using the THUMS pedestrian model has been carried out to study the behaviour of the model during the real-world crash scenario and evaluate its biofidelity. Methodology of reconstruction has been divided into two steps: estimation of unknown kinematic parameters related to crash conditions by kinematic reconstruction using multibody simulation, and FE estimation of injuries using the THUMS pedestrian model. Because, lower extremities are most commonly injured body part in pedestrian accidents, the present work focuses on lower extremity injuries. From the reconstruction study, it has been observed that kinematic and injury response of the THUMS lower extremities model shows good conformance with the actual crash data, in terms of both kinematic and injury response.
机译:有限元(FE)人体模型,但为车辆设计和评估提供有效手段,由于其有限的验证,仍然在开发阶段。这些模型已被验证,用于不同部件的文献中可用的尸体测试数据。然而,已经确定了使用这些FE模型的真实世界事故的重建,以评估他们的生物能力和真实碰撞情景的鲁棒性。因此,在目前的研究FE重建突袭的三个现实世界行人事故中,已经进行了使用Thums行人模型的英国数据库,以研究在现实世界碰撞情景期间模型的行为,并评估其生物束性。重建方法分为两个步骤:使用多体模拟的运动重建估计与碰撞条件相关的,使用Thums行人模型进行损伤的Fe估计。因为,下肢是行人事故中最常见的身体部位,目前的工作侧重于下肢损伤。从重建研究来看,已经观察到,在运动学和伤害反应方面,Thums下肢模型的运动和损伤响应显示出与实际碰撞数据的良好一致性。

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