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Interface and model reduction for efficient explicit simulations - a case study with nonlinear vehicle crash models

机译:界面和模型简化,用于有效的显式仿真-非线性车辆碰撞模型的案例研究

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This work presents an approach to save simulation time in explicit crash simulations of vehicles by applying model order reduction (MOR). The model of a kart frame is split into linear and nonlinear parts. The linear part is reduced with linear MOR techniques in MatMorembs. Optimal substructuring methods are used to calculate suitable reduced models which are exported to LS-DYNA. Afterwards, the model consisting of a linear reduced part and a nonlinear part is simulated in the online step. The plastic deformation of the kart frame as well as the accelerations of the driver calculated with various reduction and parameter settings are compared with the accelerations measured when the original, unreduced nonlinear model is simulated. For optimal simulation results, the large interface between the models needs to be approximated by suitable interface-reduction approaches. The novel contribution is the application of advanced interface-reduction techniques in nonlinear explicit crash simulations. Craig-Bampton and Gramian matrix-based-like techniques with global, local and no interface reduction are compared to find optimally reduced substructures in terms of approximation quality of the assembled system and computational effort. For the kart frame, the applicability of the method is proven by gaining a small simulation speed up which cannot be achieved with the standard reduction methods provided by LS-DYNA.
机译:这项工作提出了一种通过应用模型降阶(MOR)来节省车辆显式碰撞仿真中的仿真时间的方法。卡丁车车架的模型分为线性和非线性部分。用MatMorembs中的线性MOR技术减少了线性部分。最优子结构化方法用于计算合适的简化模型,并将其导出到LS-DYNA。然后,在在线步骤中模拟由线性缩小部分和非线性部分组成的模型。将卡丁车车架的塑性变形以及通过各种缩减和参数设置计算出的驾驶员加速度与模拟原始未缩减非线性模型时测得的加速度进行比较。为了获得最佳的仿真结果,需要通过适当的接口简化方法来近似模型之间的大接口。新颖的贡献是高级接口简化技术在非线性显式碰撞仿真中的应用。比较了克雷格-邦普顿(Craig-Bampton)和基于Gramian的类矩阵技术(具有全局,局部和无接口缩减),以从组装系统的近似质量和计算工作量方面找到最佳缩减的子结构。对于卡丁车车架,该方法的适用性通过获得较小的模拟速度来证明,而这是LS-DYNA提供的标准归约方法无法实现的。

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