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A comparison between Finite Element and Waveguide Finite Element Methods for the simulation of tire/road interaction

机译:有限元和波导有限元方法对轮胎/道路交互模拟的比较

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Due to increasing road utilization and tightening regulations, an increasing effort is made by the tire and automotive industries for accurate modeling of tire/road noise. It is well known that finite element (FE) based methods describing the vibration response of a rolling tire are computationally expensive while analytical models do not offer the necessary accuracy in the structural description of the tire. The recently proposed waveguide finite element (WFE) method combines the detailed description of a discretized tire cross section with a computationally efficient wave approach in the circumferential direction. The method has been successfully applied for tire dynamics and rolling noise simulations. An important aspect for the modeling of rolling noise is an accurate description of the road induced excitation. Both the high frequency vibration field and the lower frequency or quasi-static contact area need to be accurately captured. In this work we compare FE and WFE models of a tire in terms of traditional NVH properties such as mobility and modal frequencies, and in term of contact behavior such as footprint shape and structural stiffness. This way the potential of the WFE method for the modeling of both the excitation and the response of a rolling tire is critically examined.
机译:由于道路利用率增加和紧缩规定,轮胎和汽车行业的越来越努力是为了准确建模轮胎/道路噪音。众所周知,描述滚动轮胎的振动响应的基于有限元(Fe)的方法在计算上昂贵,而分析模型在轮胎的结构描述中没有提供必要的准确性。最近提出的波导有限元(WFE)方法将离散的轮胎横截面的详细描述结合在圆周方向上具有计算有效的波路。该方法已成功应用于轮胎动力学和滚动噪声模拟。滚动噪声建模的一个重要方面是道路诱导激励的准确描述。需要精确地捕获高频振动场和较低的频率或准静态接触面积。在这项工作中,我们在传统的NVH性质如移动性和模态频率之类的方面比较轮胎的FE和WFE模型,以及在占地面积和结构刚度之类的接触行为期间。这种方式,对滚动轮胎的激励建模的WFE方法的潜力是重大检查的。

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