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Influence Law of Upward Throw and Lateral Deviation Distances for Struck Pedestrian on Vehicle Body Surface

机译:车身表面击中行人向上投掷和横向偏差的影响法

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Based on the coupling of PC-Crash and embedded MADYMO, the impacting vehicle and pedestrian are respectively modeled as a multi-body system. The influence laws and factors of upward throw and lateral deviation distances for the impacted pedestrian involved in a vehicle/pedestrian collision are in depth analyzed with simulating by selecting main factors influencing on contact location for pedestrian's head on the impacting vehicle exterior as independent variables for simulating tests. Moreover, for various influencing factors, the approximate vehicle impact speed thresholds under different collision circumstances are determined from the available simulating data. On the other hand, the mathematical relationships between post-impact pedestrian's upward throw/lateral deviation distances and vehicle impact speed under different collision scenarios are derived from regression analyses of the simulating data. The comparisons of simulation results with real world and staged vehicle/pedestrian impacts have indicated a good harmony and consistency between them; moreover, the derived regression equations may be used to access the lower vehicle impact speed and pre-impact pedestrian speed. The results in this paper will be of great practicability in reconstruction analysis and technical appraisal of vehicle/pedestrian collisions in China.
机译:基于PC碰撞和嵌入式MADYMO的耦合,冲击车辆和行人分别是一种多体系。在车辆/行人碰撞中涉及的冲击行人向上投掷和横向偏差的影响法和因素深入分析了影响行人头部在冲击车外部的接触位置的主要因素作为模拟的独立变量测试。此外,对于各种影响因素,从可用的模拟数据确定不同碰撞情况下的近似车辆冲击速度阈值。另一方面,在不同冲突场景下,影响后行人的向上抛出/横向距离和车辆冲击速度之间的数学关系源自模拟数据的回归分析。仿真结果与现实世界和演习车辆/行人影响的比较表明它们之间的良好和谐和一致性;此外,衍生的回归方程可用于访问较低的车辆冲击速度和预冲击行人速度。本文的结果将对中国的重建分析和技术评估的重要性造成巨大的实用性。

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