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Aerodynamic research of a racing car based on wind tunnel test and computational fluid dynamics

机译:基于风洞试验和计算流体力学的赛车空气动力学研究

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Wind tunnel test and computational fluid dynamics (CFD) simulation are two main methods for the study of automotive aerodynamics. CFD simulation software solves the results in calculation by using the basic theory of aerodynamic. Calculation will inevitably lead to bias, and the wind tunnel test can effectively simulate the real driving condition, which is the most effective aerodynamics research method. This paper researches the aerodynamic characteristics of the wing of a racing car. Aerodynamic model of a racing car is established. Wind tunnel test is carried out and compared with the simulation results of computational fluid dynamics. The deviation of the two methods is small, and the accuracy of computational fluid dynamics simulation is verified. By means of CFD software simulation, the coefficients of six aerodynamic forces are fitted and the aerodynamic equations are obtained. Finally, the aerodynamic forces and torques of the racing car travel in bend are calculated.
机译:风洞测试和计算流体动力学(CFD)模拟是研究汽车空气动力学的两种主要方法。 CFD仿真软件利用空气动力学的基本原理解决了计算结果。计算不可避免地会导致偏差,风洞试验可以有效地模拟真实的行驶状况,这是最有效的空气动力学研究方法。本文研究了赛车机翼的空气动力学特性。建立了赛车的空气动力学模型。进行风洞测试,并将其与计算流体动力学的模拟结果进行比较。两种方法的偏差很小,验证了计算流体动力学仿真的准确性。通过CFD软件仿真,拟合了六个空气动力的系数,得到了空气动力方程。最后,计算了赛车在弯道中行驶的空气动力和扭矩。

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