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Numerical (analytical-based) model for the study of vehicle frontal collision

机译:用于研究车辆正面碰撞的数值模型(基于分析)

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摘要

This article describes and solves a mathematical model useful to study a vehicle's kinematics before and after collision, and the structure behaviour during an impact. The algorithm is based on solving differential equations using Runge-Kutta numerical method. To extract input data, a full-scale numerical model is solved using LS-Dyna. The friction coefficient between vehicle and barrier is evaluated and compared with the input value. The motion of the vehicle is solved and then passengers are added. The acceleration and displacement of the passenger's centre of gravity are computed for different cases of impact angle and safety restrain system's stiffness. To extend the capabilities for accident-reconstruction applications, a procedure to construct deformation force pulse is presented. Also, a method for the evaluation of vehicle's kinematic parameters using force-deformation curve is presented. The performances of the open architecture of the analytical model are presented and applied for the study of passenger's head motion.
机译:本文介绍并解决了一个数学模型,该模型可用于研究碰撞前后的运动学以及碰撞过程中的结构行为。该算法基于使用Runge-Kutta数值方法求解微分方程。为了提取输入数据,使用LS-Dyna求解了一个完整的数值模型。评估车辆与障碍之间的摩擦系数,并将其与输入值进行比较。解决了车辆的运动,然后增加了乘客。针对撞击角和安全约束系统刚度的不同情况,计算了乘客重心的加速度和位移。为了扩展事故重建应用程序的功能,提出了构造变形力脉冲的程序。此外,提出了一种使用力-变形曲线评估车辆运动学参数的方法。提出了分析模型的开放式体系结构的性能,并将其用于研究乘客的头部运动。

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