Numerical method of carbon-based material ablation effects on aero-heating for half-sphere
Jiangfeng Wang, Jiawei Li, Fa-Ming Zhao, Xiaofeng Fan
Abstract
Jiangfeng Wang, Jiawei Li, Fa-Ming Zhao, Xiaofeng Fan
Abstract
A numerical method of aerodynamic heating with material thermal ablation effects for hypersonic half-sphere is presented. A surface material ablation model is provided to analyze the ablation effects on aero-thermal properties and structural heat conduction for thermal protection system (TPS) of hypersonic vehicles. To demonstrate its capability, applications for thermal analysis of hypersonic vehicles using carbonaceous ceramic ablators are performed and discussed. The numerical results show the high efficiency and validation of the method developed in thermal characteristics analysis of hypersonic aerodynamic heating.
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A numerical method of aerodynamic heating with material thermal ablation effects for hypersonic half-sphere is presented. A surface material ablation model is provided to analyze the ablation effects on aero-thermal properties and structural heat conduction for thermal protection system (TPS) of hypersonic vehicles. To demonstrate its capability, applications for thermal analysis of hypersonic vehicles using carbonaceous ceramic ablators are performed and discussed. The numerical results show the high efficiency and validation of the method developed in thermal characteristics analysis of hypersonic aerodynamic heating.
Key concepts: Aerodynamic heating, Hypersonic speed, Materials science, Space Shuttle thermal protection system, Hypersonic flight, Aerodynamics, Ablation, Thermal conduction