Effects of Angle of Attack and Bluntness on Heating Rate Distribution of Blunt Models at Hypersonic Speeds
- Авторы: Saiprakash M.1, Senthilkumar C.2, Kadam sunil G.3, Rampratap S.P.3, Shanmugam V.3, Balu G.3
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Учреждения:
- Department of Aerospace Engineering
- Department of Aerospace Engineering, MIT Campus
- Directorate of Aerodynamics
- Выпуск: Том 54, № 6 (2019)
- Страницы: 850-862
- Раздел: Article
- URL: https://journals.rcsi.science/0015-4628/article/view/156442
- DOI: https://doi.org/10.1134/S0015462819060090
- ID: 156442
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Аннотация
The effects of nose radius on stagnation and surface heat transfer rate along the surface are addressed in this research paper. Experiments are carried out in hypersonic shock tunnel, at hypersonic Mach number of 6.56 for 11.38° apex angle blunt cone with nose radius of 0.2R, base radius of R. Similarly, experiments are carried out at Mach 7.32 for 13.87° apex angle blunt cone models with nose radius of 0.18R′, base radius of R′. Test is performed at stagnation enthalpy of 1.4 and 2 MJ/kg with effective test time of 3.5 ms. Convective heat transfer measurements have been carried out on the test model at two different angles of attack, namely 0° and 5° with angle of rotation of 0°, 90°,180° with platinum thin film sensors. ANSYS-Fluent used to simulate the flow over the blunt models at different Mach numbers. The measured shock standoff distance from Schlieren visualization images compared with theory and computational fluid dynamic study for both configurations. The measured stagnation heating value is compared with theoretical value estimated using Fay-Riddell expression and numerical simulation. The measured heat transfer rate is higher for configuration 1 than configuration 2. The increases in heat transfer rate is due higher density ratio across the shock wave and the reduced shock layer thickness. The measured shock layer thickness is 2.06 mm for Mach 6.56 and 3.45 mm for Mach 7.32. The heat transfer rate is higher for Mach 6.56 as compared to Mach 7.32.
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M. Saiprakash
Department of Aerospace Engineering
Автор, ответственный за переписку.
Email: iamsaiaero@gmail.com
Индия, Hyderabad, Telangana
C. Senthilkumar
Department of Aerospace Engineering, MIT Campus
Автор, ответственный за переписку.
Email: cskumar34@gmail.com
Индия, Chennai, 600044
G. Kadam sunil
Directorate of Aerodynamics
Автор, ответственный за переписку.
Email: sgk54@yahoo.com
Индия, Hyderabad, 500058
Singh Rampratap
Directorate of Aerodynamics
Автор, ответственный за переписку.
Email: sprakash29@gmail.com
Индия, Hyderabad, 500058
V. Shanmugam
Directorate of Aerodynamics
Автор, ответственный за переписку.
Email: shanmugam@drdl.drdo.in
Индия, Hyderabad, 500058
G. Balu
Directorate of Aerodynamics
Автор, ответственный за переписку.
Email: gbalu_aed@drdl.drdo.in
Индия, Hyderabad, 500058
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