首页> 外文会议>IASTED International Conference on Modelling and Simulation >BIOMECHANICAL MODELLING OF THE BICYCLIST AND VEHICLE IMPACT TO IDENTIFY THE OPTIMUM FRONT END VEHICLE GEOMETRY
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BIOMECHANICAL MODELLING OF THE BICYCLIST AND VEHICLE IMPACT TO IDENTIFY THE OPTIMUM FRONT END VEHICLE GEOMETRY

机译:骑自行车的生物力学建模,骑自行车和车辆的影响,识别最佳前端车几何

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Accurately determining the bicyclist head impact location on the vehicle body is of prime importance to developing a system which reduces the head and face injuries of the cyclist. The vehicles front end geometry needs to be properly studied to make it friendlier for the vulnerable road users such as pedestrians and the cyclists, in the event of impact. The kinematics of the cyclist on the impact depends on the type of vehicle impacting and the orientation of the bicycle with respect to the striking vehicle. This paper details a simulation performed in order to determine the kinematics of the adult and young cyclist after impact with a passenger car. The paper only discusses the configuration in which the front of the vehicle contacts the side of the bicycle, similar to an intersection accident. A computational model of the cycle and the vehicle front is modeled using MADYMO. A hybrid III 50th percentile standing Anthropomorphic Test Dummy (ATD) is used for the adult cyclist and a TNO P-10 Child ATD representing a ten year old is used for young cyclist. The vehicle front end is modeled using ellipsoids which are positioned to vary the geometric factors; such as bumper height, bumper lead angle, and the hood height of the passenger car. The results of this analysis demonstrate that the bumper height is not a significant factor controlling the head impact point on the vehicle. Hood height and the cyclist height are significant factors. Higher hood heights are better for the adult cyclist. The young cyclist's head is not exposed to the stiff zone for any condition.
机译:准确地确定车身上的自行车头部冲击位置是开发一种减少骑自行车者的头部和面部伤害的系统的主要重要性。在发生冲击的情况下,需要妥善研究车辆前端几何形状,使其对脆弱的道路用户(如行人和骑自行车者)更友好。骑自行车者对冲击的运动学取决于车辆冲击的类型和自行车相对于撞击车辆的取向。本文详细说明了一种模拟,以便在与乘用车冲击后确定成人和年轻骑车人的运动学。本文仅讨论了车辆前部与自行车侧面接触的配置,类似于交叉口事故。循环的计算模型和车辆前线使用MADYMO建模。杂交III 50百分位稳定的拟人拟人测试假人(ATD)用于成人骑自行车者和代表十岁的儿童ATD用于年轻骑车者。车辆前端采用椭圆体建模,定位为改变几何因子;如保险杠高度,防撞铅角和乘用车的罩高度。该分析的结果表明,保险杠高度不是控制车辆上的头部冲击点的重要因素。罩高度和骑自行车的高度是重要因素。更高的罩高度对成人骑车人来说更好。年轻骑自行车的头部没有暴露在刚性区内有任何条件。

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