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Investigation of the Effect of Dimple Bionic Nonsmooth Surface on Tire Antihydroplaning

机译:酒窝仿生非光滑表面对轮胎防滑水影响的研究

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摘要

Inspired by the idea that bionic nonsmooth surfaces (BNSS) reduce fluid adhesion and resistance, the effect of dimple bionic nonsmooth structure arranged in tire circumferential grooves surface on antihydroplaning performance was investigated by using Computational Fluid Dynamics (CFD). The physical model of the object (model of dimple bionic nonsmooth surface distribution, hydroplaning model) and SST k − ω turbulence model are established for numerical analysis of tire hydroplaning. By virtue of the orthogonal table L16(45), the parameters of dimple bionic nonsmooth structure design compared to the smooth structure were analyzed, and the priority level of the experimental factors as well as the best combination within the scope of the experiment was obtained. The simulation results show that dimple bionic nonsmooth structure can reduce water flow resistance by disturbing the eddy movement in boundary layers. Then, optimal type of dimple bionic nonsmooth structure is arranged on the bottom of tire circumferential grooves for hydroplaning performance analysis. The results show that the dimple bionic nonsmooth structure effectively decreases the tread hydrodynamic pressure when driving on water film and increases the tire hydroplaning velocity, thus improving tire antihydroplaning performance.
机译:受仿生非光滑表面(BNSS)降低流体附着力和阻力的想法启发,通过计算流体动力学(CFD)研究了布置在轮胎圆周槽表面的凹窝仿生非光滑结构对防滑水性能的影响。建立了对象的物理模型(酒窝仿生非光滑表面分布模型,滑水模型)和SST k-ω湍流模型,以进行轮胎滑水的数值分析。借助正交表L16(4 5 ),分析了酒窝仿生非光滑结构设计与光滑结构相比的参数,并确定了实验因素的优先级以及在其中的最佳组合获得了实验范围。仿真结果表明,酒窝仿生非光滑结构可以通过扰动边界层中的涡流运动来降低水流阻力。然后,将最佳类型的凹窝仿生非光滑结构布置在轮胎圆周凹槽的底部,以进行滑水性能分析。结果表明,凹坑仿生非光滑结构有效地降低了在水膜上行驶时胎面的流体动压,提高了轮胎的滑水速度,从而提高了轮胎的抗滑水性能。

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