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Simulating Nozzle and Jet Flow for Supersonic Noise Reduction

This research update focuses on the numerical simulation of nozzle and jet flow for reducing supersonic noise. The study includes the configuration of two pairs of NACA0012 vanes at different azimuth and attack angles. The simulation method involves the use of 3D Reynolds-Average Navier-Stokes equations and the ParCAE CFD code. Various turbulence models are employed, including S-A and K-ω SST. The study also explores alternate K-ω models if necessary. The research extends to the simulation of B27 nozzle configuration with one pair of NACA0012 vanes at different azimuth and attack angles. Additionally, the generation of 3D fan nozzle grids is discussed.

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Simulating Nozzle and Jet Flow for Supersonic Noise Reduction

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  1. Research Update Juntao Xiong 05/06/2008

  2. Object Simulation of Nozzle and Jet flow for Supersonic Noise Reduction Nozzle Configuration include two pairs NACA0012 vane (B27) Azimuth angle = 90o, 150o, Attack angle = 7.5o

  3. Numerical Simulation Method • Flow Control Equation: – 3D Reynolds-Average Navier-Stokes Equation • CFD code: – ParCAE Program • Turbulence Models – S-A (To be completed) – K-ω (Original include) – K-ω SST (To be completed) – new K-ω (If necessary)

  4. Repeat Tadashi work-3bb Nozzle Configuration include one pairs NACA0012 vane (3bb) Azimuth angle = 90o, Attack angle = 2.0o

  5. B27 simulation ----3D Fan Nozzle Grid Generation Nozzle Configuration (B27)

  6. B27 simulation ----3-D Fan Nozzle Grid Generation 1 Blocks , The total grid number is 815,425

  7. B27 simulation ----3D Fan Nozzle include vane Grid Generation Nozzle Configuration include a pair NACA0012 vane(B27) Azimuth angle = 150o, Attack angle = 7.5o

  8. B27 simulation ----3D Fan Nozzle include vane Grid Generation 5 Blocks , The total grid number is 2,959,905

  9. B27 simulation ----3D Fan Nozzle include vane Grid Generation

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