首页> 外文期刊>International Journal of Computational Methods and Experimental Measurements >AERODYNAMIC STUDY OF MOTORCYCLE RACING WHEELS: A PERFORMANCE EVALUATION BASED ON NUMERICAL CFD SIMULATIONS
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AERODYNAMIC STUDY OF MOTORCYCLE RACING WHEELS: A PERFORMANCE EVALUATION BASED ON NUMERICAL CFD SIMULATIONS

机译:摩托车赛车车轮的空气动力学研究:基于数值CFD模拟的性能评估

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In any racing competitions, the aerodynamic performances of the equipment are determinant. This is true, for example, for cars, where the geometry of the bodywork and of the wings can ensure a lower Cx coefficient and/or a higher down-force and a higher handling. In other competitions, like rowing, the aerodynamics of the hull can reduce the effort done by the athletes. In the cycle and motorcycle racing competitions, other aspects related to aerodynamics become important, such as the manoeuvrability and stability. In the present research, a numerical approach was used in order to compare different front-wheel geometries (of a racing motor-bike) in terms of drag, lift and axial forces. Three different wheel designs have been compared. The first one consists in a traditional seven spokes aluminium design, the second wheel is a 6 spokes magnesium solution and the third a solid-disk wheel. Steady state as well as transient simulations was performed with OpenFOAM, a free open-source software. This was selected because it allows a higher flexibility with respect to any close-source commercial software. The possibility to customize the solver as well as the boundary conditions allows the analysis of the physical problem of interest. The free license allows a high parallelization of the computations. The steady-state simulations were performed by freezing the wheel position and introducing a rotating reference frame. In this way, the computational time was significantly reduced. For the transient simulations, the computational domain was split into two subdomains. The internal one is cylindrical and contains the wheel. The rotational velocity of the wheel was imposed by applying a rigid rotation to the mesh of the internal subdomain. Mesh interfaces ensures the continuity of the solution across the domains.
机译:在任何赛车比赛中,设备的空气动力学性能是决定因素。这是真的,例如,对于汽车,在车身和翼的几何形状可以确保下部CX系数和/或更高的下行力和更高的操纵。在其他比赛中,像划船一样,船体的空气动力学可以减少运动员所做的努力。在循环和摩托车赛车比赛中,与空气动力学相关的其他方面变得重要,例如机动性和稳定性。在本研究中,使用了一种数值方法,以便在拖曳,提升和轴向力方面比较不同的前轮几何形状(赛车运动自行车)。已经比较了三个不同的车轮设计。第一个在传统的七位辐射铝设计中组成,第二轮是一个6辐镁溶液和第三个固体盘。使用OpenFoam进行稳定状态以及瞬态模拟,免费开源软件。选择这是因为它允许对任何近源商业软件的灵活性更高。定制求解器以及边界条件的可能性允许分析感兴趣的物理问题。免费许可证允许计算的高并行化。通过冻结车轮位置并引入旋转参考框架来执行稳态模拟。以这种方式,计算时间显着降低。对于瞬态仿真,计算域被分成两个子域。内部是圆柱形的并包含车轮。通过将刚性旋转施加到内部子域的网状物来施加车轮的旋转速度。网格接口可确保域中解决方案的连续性。

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