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A Computational Study of the Flow Around an Isolated Non-Pneumatic Tire

机译:隔离式非充气轮胎周围流动的计算研究

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摘要

An understanding of the flow around a tire in contact with the ground is important when designing fuel-efficient tires as the aerodynamic drag accounts for about one third of an entire vehicle's rolling loss. Recently, non-pneumatic tires (NPTs) have drawn attention mainly due to their low rolling resistance associated with the use of low viscoelastic materials in their construction. However, an NPT's fuel efficiency should be re-evaluated in terms of aerodynamic drag: discrete flexible spokes in an NPT may cause more aerodynamic drag, resulting in greater rolling resistance. In this study, the aerodynamic flow around a non-pneumatic tire in contact with the ground is investigated for i) stationary and ii) rotating cases using the steady state Reynolds-Averaged Navier-Stokes (RANS) method. A sensitivity analysis was carried out with a varying mesh density. The flow into cavity by the discrete spoke geometry of the NPT does not significantly affect the overall aerodynamic drag.
机译:当设计节油型轮胎时,了解与地面接触的轮胎周围的流动非常重要,因为空气动力阻力约占整车滚动损失的三分之一。近来,非充气轮胎(NPT)引起人们的关注主要是由于其低滚动阻力与在其构造中使用低粘弹性材料有关。但是,应该根据空气阻力来重新评估《不扩散核武器条约》的燃油效率:《不扩散核武器条约》中离散的柔性辐条可能会导致更大的空气动力学阻力,从而导致更大的滚动阻力。在这项研究中,使用稳态雷诺平均Navier-Stokes(RANS)方法研究了i)静止和ii)旋转情况下与地面接触的非充气轮胎周围的空气动力流动。在变化的网格密度下进行了灵敏度分析。 NPT的不连续辐条几何形状流入空腔不会显着影响整体空气阻力。

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