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Aerodynamic Drag and Noise Minimization of Rear End Parameters in a Simplified Car Model Utilizing Robust Parameter Design Method

机译:利用鲁棒参数设计方法简化车型后端参数的空气动力学阻力和噪声最小化

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摘要

Improvements of aerodynamics and wind noise are two important objectives for automotive engineers. Improvement of aerodynamics behavior and the reduction of wind noise have been always greatly concerned by automotive engineers since they negatively affect passengers comfort, fuel consumption, car performance and, stability. In this paper, optimum levels of four dominant rear shape parameters for a simplified car model are investigated considering drag coefficient and aerodynamic noise objectives. C-Pillar angle, trunk angle, boat tail angle and rear box length are considered as variable parameters. Taguchi method is used for finding aerodynamic and acoustic optimum levels. Numerical simulation for base case is compared with experimental results in the literature. Numerical results show good agreement with experimental test. Afterwards, optimum levels for parameters regarding objectives are calculated using Taguchi method. Optimization results have good agreement with simulation results.
机译:空气动力学和风噪声的改善是汽车工程师的两个重要目标。由于它们对乘客舒适,燃料消耗,汽车性能以及稳定性,自动影响乘客舒适,燃料消耗,汽车性能以及稳定性,气动性行为的改善总是极大地关注汽车工程师。在本文中,考虑了拖曳系数和空气动力学噪声目标,研究了简化汽车模型的四个主题后形参数的最佳水平。 C柱角度,树干角,船尾角和后箱长度被认为是可变参数。 Taguchi方法用于查找空气动力学和声学最佳水平。基础壳体数值模拟与文献中的实验结果进行了比较。数值结果表明,与实验测试良好。然后,使用Taguchi方法计算关于目标的参数的最佳水平。优化结果与模拟结果吻合良好。

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