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首页> 外文期刊>International journal of aerospace engineering >Hypersonic Flow Field Reconfiguration and Drag Reduction of Blunt Body with Spikes and Sideward Jets
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Hypersonic Flow Field Reconfiguration and Drag Reduction of Blunt Body with Spikes and Sideward Jets

机译:高超音速流场重构和钝性体的尖峰和侧向射流减阻

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Flow field reconfiguration and drag reduction have been investigated by numerically solving Navier-Stokes equations, with the 2nd order dispersion controlled dissipative scheme adopted for the convective term discretion and the 2nd order central difference scheme for viscous term. Spikes and sideward jets nearby the spike noses were set up in the front of the blunt body to reconfigure the flow field and reduce drag during hypersonic flight. The spikes and the sideward jets led to the formation of the conical shock, the reattached shock, and the circumfluence, instead of a bow shock. According to the quantitative analysis, the reconfiguration of the flow field played a dominant role in drag reduction. Basing on the locations of the reattached shock and its interaction with the conical shock, a combined parameter was proposed for a primary criterion to design the spiked bodies with sideward jets for the purpose of drag reduction.
机译:通过数值求解Navier-Stokes方程研究了流场重构和减阻,对流项自由度采用二阶色散控制耗散方案,粘性项采用二阶中心差分方案。在钝体的前部设置了尖刺附近的尖刺和侧向喷射器,以重新配置流场并减少高超音速飞行过程中的阻力。尖峰和侧向喷流导致圆锥形冲击,重新附着的冲击和环流的形成,而不是弓形冲击。根据定量分析,流场的重构在减阻方面起着主导作用。根据再冲击的位置及其与圆锥形冲击的相互作用,提出了一个组合参数作为主要标准,以设计带有侧向射流的尖刺体以减少阻力。

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