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Improving CFD prediction of drag on Paralympic tandem athletes: influence of grid resolution and turbulence model

机译:改进残奥会双人运动员阻力的CFD预测:网格分辨率和湍流模型的影响

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摘要

Tandem cycling enables visually impaired athletes to compete in cycling in the Paralympics. Tandem aerodynamics can be analysed by track measurements, wind-tunnel experiments and numerical simulations with computational fluid dynamics (CFD). However, the proximity of the pilot (front) and the stoker (rear) and the associated strong aerodynamic interactions between both athletes present substantial challenges for CFD simulations, the results of which can be very sensitive to computational parameters such as grid topology and turbulence model. To the best of our knowledge, this paper presents the first CFD and wind-tunnel investigation on tandem cycling aerodynamics. The study analyses the influence of the CFD grid topology and the turbulence model on the aerodynamic forces on pilot and stoker and compares the results with wind-tunnel measurements. It is shown that certain combinations of grid topology and turbulence model give trends that are opposite to those shown by other combinations. Indeed, some combinations provide counterintuitive drag outcomes with the stoker experiencing a drag force up to 28% greater than the pilot. Furthermore, the application of a blockage correction for two athlete bodies in close proximity is investigated. Based on a large number of CFD simulations and validation with wind-tunnel measurements, this paper provides guidelines for the accurate CFD simulation of tandem aerodynamics.
机译:双人自行车使视力障碍的运动员能够参加残奥会的比赛。串联空气动力学可以通过航迹测量,风洞实验和带有计算流体动力学(CFD)的数值模拟进行分析。但是,飞行员(前排)和the夫(后排)之间的距离以及两名运动员之间相关的强烈空气动力学相互作用对CFD模拟提出了重大挑战,其结果可能对诸如网格拓扑和湍流模型等计算参数非常敏感。据我们所知,本文介绍了首次关于串联循环空气动力学的CFD和风洞研究。该研究分析了CFD网格拓扑结构和湍流模型对飞行员和斯托克号上的空气动力的影响,并将结果与​​风洞测量结果进行了比较。结果表明,网格拓扑和湍流模型的某些组合所给出的趋势与其他组合所显示的趋势相反。确实,一些组合提供了与直觉相反的阻力结果,使夫经历的阻力比飞行员大28%。此外,研究了对两个紧邻的运动员身体进行阻塞校正的应用。基于大量的CFD模拟和风洞测量的验证,本文为串联空气动力学的精确CFD模拟提供了指导。

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