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Design optimisation using computational fluid dynamics applied to a land-based supersonic vehicle, the BLOODHOUND SSC

机译:使用计算流体动力学的优化设计应用于陆基超音速飞行器BLOODHOUND SSC

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This paper details the computational design optimisation strategy employed to achieve an engineering solution to the problem of excessive supersonic lift at the rear of the BLOODHOUND SSC (SuperSonic Car) during its design. The optimisation problem is described first, followed by details of the computational fluid dynamics procedure employed to study the aerodynamic performance of the vehicle and the design optimisation strategy utilising Design of Experiments. The 'optimised' design resulting from this study is presented in the final section and contrasted with the 'unoptimised' baseline geometry. The final vehicle geometry presented in this paper is, at the time of writing, being built and is due to be tested in 2013 in an attempt to increase the World Land Speed Record from 763 mph to 1,000 mph.
机译:本文详细介绍了用于设计解决BLOODHOUND SSC(超音速汽车)后部超音速升程问题的工程解决方案的计算设计优化策略。首先描述了优化问题,然后详细介绍了用于研究车辆空气动力学性能的计算流体动力学程序和利用实验设计的设计优化策略。最后一部分介绍了这项研究得出的“优化”设计,并与“未优化”的基线几何形状进行了对比。在撰写本文时,本文中提出的最终车辆几何形状正在制造中,并将于2013年进行测试,以将世界陆地速度记录从763 mph提升至1,000 mph。

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