Validation of CFD Simulations for Hypersonic Flow Over a Yawed Circular Cone

Validation of CFD Simulations for Hypersonic Flow Over a Yawed Circular Cone PDF Author: Julian D. Cecil
Publisher:
ISBN:
Category : Electronic dissertations
Languages : en
Pages : 37

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Book Description
This study aims to numerically simulate the wind tunnel results for hypersonic flow over a circular cone of semi-apex angle of 10 degrees yawed from 0° to 20° using the commercial computational fluid dynamics software ANSYS Fluent. The ANSYS workbench is used to create the 10° semi-apex circular cone with a shock aligned structured mesh of 3.05 million cells surrounding the cone. Simulation boundary conditions for pressure and temperature in the far field correspond to Tracy's wind tunnel experiment at Cal Tech. The six simulations cases are conducted for yaw angles of 0, 8, 12, 16, 20 and 24 degrees. The unsteady Reynolds-Averaged compressible Navier-Stokes solver with Spalart-Allmaras (SA) turbulence model is employed. The upstream flow Mach number is M = 8 and Reynolds number is Re00 = 4.2 x105 based on cone generator length. The maximum variation in static pressure computations around the cone is 7% of the experimental values and the maximum variation in heat transfer computations is within 12% of the experimental values; the maximum difference between the computations and experiment occurs at the leeward meridian of the cone. By further refinement of the mesh and using other turbulence models, it is possible that computational accuracy of the simulations may be further improved; however it requires additional investigation. Nevertheless the present simulations demonstrate that CFD can be employed with sufficient accuracy to compute the hypersonic flows about space vehicles with fully turbulent flow.

Validation of CFD Simulations for Hypersonic Flow Over a Yawed Circular Cone

Validation of CFD Simulations for Hypersonic Flow Over a Yawed Circular Cone PDF Author: Julian D. Cecil
Publisher:
ISBN:
Category : Electronic dissertations
Languages : en
Pages : 37

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Book Description
This study aims to numerically simulate the wind tunnel results for hypersonic flow over a circular cone of semi-apex angle of 10 degrees yawed from 0° to 20° using the commercial computational fluid dynamics software ANSYS Fluent. The ANSYS workbench is used to create the 10° semi-apex circular cone with a shock aligned structured mesh of 3.05 million cells surrounding the cone. Simulation boundary conditions for pressure and temperature in the far field correspond to Tracy's wind tunnel experiment at Cal Tech. The six simulations cases are conducted for yaw angles of 0, 8, 12, 16, 20 and 24 degrees. The unsteady Reynolds-Averaged compressible Navier-Stokes solver with Spalart-Allmaras (SA) turbulence model is employed. The upstream flow Mach number is M = 8 and Reynolds number is Re00 = 4.2 x105 based on cone generator length. The maximum variation in static pressure computations around the cone is 7% of the experimental values and the maximum variation in heat transfer computations is within 12% of the experimental values; the maximum difference between the computations and experiment occurs at the leeward meridian of the cone. By further refinement of the mesh and using other turbulence models, it is possible that computational accuracy of the simulations may be further improved; however it requires additional investigation. Nevertheless the present simulations demonstrate that CFD can be employed with sufficient accuracy to compute the hypersonic flows about space vehicles with fully turbulent flow.

Hypersonic Flow Over a Yawed Circular Cone

Hypersonic Flow Over a Yawed Circular Cone PDF Author: Richard Ripley Tracy
Publisher:
ISBN:
Category : Aerodynamics, Hypersonic
Languages : en
Pages : 270

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CFD Validation for Hypersonic Flight: Hypersonic Double-Cone Flow Simulations

CFD Validation for Hypersonic Flight: Hypersonic Double-Cone Flow Simulations PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 15

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Turbulent Boundary Layer on a Yawed Cone in a Supersonic Stream

Turbulent Boundary Layer on a Yawed Cone in a Supersonic Stream PDF Author: Willis H. Braun
Publisher:
ISBN:
Category :
Languages : en
Pages : 24

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A CFD Validation Roadmap for Hypersonic Flows

A CFD Validation Roadmap for Hypersonic Flows PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 24

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Effects of Angle of Attack and Bluntness on the Hypersonic Flow Over a 15 ̊semiapex Cone in Helium

Effects of Angle of Attack and Bluntness on the Hypersonic Flow Over a 15 ̊semiapex Cone in Helium PDF Author: Joseph W. Cleary
Publisher:
ISBN:
Category : Angle of attack (Aerodynamics)
Languages : en
Pages : 52

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Computational Study of Hypersonic Double-cone Experiments for Code Validation

Computational Study of Hypersonic Double-cone Experiments for Code Validation PDF Author: Ioannis Nompelis
Publisher:
ISBN:
Category :
Languages : en
Pages : 324

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26th AIAA Fluid Dynamics Conference

26th AIAA Fluid Dynamics Conference PDF Author:
Publisher:
ISBN:
Category : Fluid dynamics
Languages : en
Pages : 478

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A Cfd Validation Roadmap for Hypersonic Flows

A Cfd Validation Roadmap for Hypersonic Flows PDF Author: National Aeronautics and Space Administration (NASA)
Publisher: Createspace Independent Publishing Platform
ISBN: 9781724976987
Category :
Languages : en
Pages : 38

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Book Description
A roadmap for computational fluid dynamics (CFD) code validation is developed. The elements of the roadmap are consistent with air-breathing vehicle design requirements and related to the important flow path components: forebody, inlet, combustor, and nozzle. Building block and benchmark validation experiments are identified along with their test conditions and measurements. Based on an evaluation criteria, recommendations for an initial CFD validation data base are given and gaps identified where future experiments would provide the needed validation data. Marvin, Joseph G. Ames Research Center NASA-TM-103935, A-92091, NAS 1.15:103935 RTOP 505-59-00...

Verification and Validation of CFD Simulations

Verification and Validation of CFD Simulations PDF Author:
Publisher:
ISBN:
Category : Computational fluid dynamics
Languages : en
Pages : 112

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