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Analysis of lift and drag coefficients of a GT2 racing car at various speeds with movable wheels and ground

机译:带有活动车轮和地面的GT2赛车在不同速度下的升力和阻力系数分析

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摘要

The paper proposes a study of a GT2 racing car with a computational fluid dynamic (CFD) tool. Results of STAR-CCM+ simulations of the flow around the car in a wind tunnel with movable ground and wheels are presented for different air speeds to assess the different contributions of pressure and shear to lift and drag over the speed range. The rear wing contributes more than 85% of the lift force and 7-8% of the drag force for this particular class of racing cars. When reference is made to the low speed drag and lift coefficients, increasing the speed from 25 to 100 m/s produces an increase of CD of more than 3% and a reduction of CL of more than 2%. The resultsuggests modifying the constant CD and CL values used in lap time simulation toolsintroducing the tabulated values to interpolate vs. the speed of the car.
机译:本文提出了一种使用计算流体动力学(CFD)工具的GT2赛车的研究。 STAR-CCM +仿真结果显示了风速在带有可移动地面和车轮的风洞中汽车周围的流动,以评估不同的空气速度,以评估压力和剪切力在速度范围内的起升和阻力的不同贡献。对于这种特殊类型的赛车,后翼贡献了超过85%的升力和7-8%的阻力。当提及低速阻力和升力系数时,将速度从25 m / s增加到100 m / s会导致CD的增加超过3%,CL的减少超过2%。结果建议修改圈速仿真工具中使用的恒定CD和CL值,并引入表格值以内插对汽车速度。

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