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The Full Flowpath Analysis of a Hypersonic Vehicle
Authors:Sun Shu  Zhang Hongying  Cheng Keming  Wu Yizhao
Institution:College of Aerospace Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing 210016, China
Abstract:A numerical study has been carried out to investigate the full flow path and aerodynamic characteristics of a hypersonic vehicle at a 7.0 free stream Mach number. Results indicate that the inlet started and unstarted operations have remarkable effects on the flow pattern of the full flow path. When the inlet operates in a started mode, the transverse pressure gradient generated by the forebody alters the air captured characteristics and the entering flow quality of the inlet. Furthermore, the expansion process of the nozzle jet flow is obviously affected by the external flow field around the afterbody with the cross section shape transiting from a near rectangle at the exit of the nozzle to a near triangle at the tail of the vehicle. When the inlet operates in an tnstarted mode, the aerodynamic instability can be observed in the full flow path of the vehicle. Due to the oscillation of the external compressed shock wave and nozzle jet flow, the aerodynamic characteristics of the vehicle vary periodically with the lift-drag ratio changing fiom 0.25 to 2.09. Finally, by comparing to the experimental data, the reliability of the CFD is verified.
Keywords:hypersonic vehicle  full flow path  inlet start  inlet unstart  unsteady  lift-drag ratio  Hypersonic Vehicle  Analysis  reliability  comparing  experimental data  ratio  oscillation  shock wave  instability  expansion  process  jet flow  external  flow field  cross section  shape  exit  nozzle  triangle  tail
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