大升力翼型在赛车应用中的比较分析

M. N. F. Rab, Muhammad Junaid Alam, Ahson Akhlaque, M. Mahrukh
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引用次数: 1

摘要

本研究的目的是利用XFOIL翼型分析代码在孤立流场中分析各种高升力低雷诺数的翼型,并选择适合赛车应用的最佳翼型。对不同翼型的失速特性、过渡位置、压力恢复、压力分布和边界层特性进行比较后选择翼型。在选择翼型时,首要考虑的是最高的Cl,同时在赛道上遇到的雷诺数范围内实现可持续的性能。Cl的增加总是伴随着Cd的增加;然而,这必须妥协,因为主要目标是增加空气动力学抓地力。在一级方程式/学生方程式中,增加下压力以减少单圈时间总是可取的。在考虑影响翼型性能的各种参数的基础上,建立了大升力低雷诺数翼型的选择准则。
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COMPARATIVE ANALYSIS OF HIGH-LIFT AIRFOILS FOR MOTORSPORTS APPLICATIONS
The purpose of this study is to analyse various high-lift low-Reynolds-number airfoils using the XFOIL airfoil analysis code in the isolated flow field and to select the optimum airfoil to suit motorsports applications. The airfoil is selected after comparing the stall behavior, transition location, pressure recovery, pressure distribution and boundary-layer characteristics of various airfoils. The prime consideration while selecting an airfoil is the highest Cl while achieving the sustainable performance over a range of Reynolds numbers encountered on the race track. An increase in Cl is always accompanied by an increase in Cd; however, this must be compromised since the main goal is to increase the aerodynamic grip. It is always desirable to increase the downforce in Formula One /Formula Student to gain a reduction in lap time. This paper establishes the criteria for the selection of high-lift low-Reynolds-number airfoils, while considering the various parameters that affect the performance of airfoils.
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