DocumentCode :
631231
Title :
Ablation modeling of subliming ablator of a blunt-nosed body under aerodynamic heating
Author :
Simsek, Bilal ; Acar, Burak ; Kuran, Bayindir
Author_Institution :
Syst. Design Dept., ROKETSAN Missiles Ind. Inc., Ankara, Turkey
fYear :
2013
fDate :
12-14 June 2013
Firstpage :
25
Lastpage :
28
Abstract :
The purpose of this study is to predict shape change due to ablation and to find temperature distribution of the thermal protection system of a supersonic vehicle under aerodynamic heating by using finite element method. A subliming ablative material is used as thermal protection material. Required material properties for the ablation analyses are found by using TGA (Thermogravimetric Analysis) thermal analysis techniques. Moreover, oxyacetylene ablation tests are performed for the subliming ablative specimens and measured recession values are compared with the analytically calculated values. Maximum difference between experimental results and analytical results is observed as 3%. For the finite element analyses, ANSYS Software is used. A numerical algorithm is developed by using programming language APDL (ANSYS Parametric Design Language) and element kill feature of ANSYS is used for ablation simulation. Numerical algorithm is applied to test specimens and blunt-nosed section of the supersonic missile. Recession history of the nose section is obtained during flight period.
Keywords :
aerodynamics; aircraft; finite element analysis; heating; missiles; temperature distribution; thermal analysis; vehicle dynamics; ANSYS parametric design language; ANSYS software; APDL programming language; TGA; ablation modeling; aerodynamic heating; finite element method; shape change; subliming ablative materials; subliming ablator; supersonic missiles; supersonic vehicles; temperature distribution; thermal analysis; thermal protection system; thermogravimetric analysis; vehicle blunt-nosed body; Aerodynamics; Atmosphere; Finite element analysis; Heating; Materials; Nose; Temperature measurement; ablation; subliming ablative; thermal protection system;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Recent Advances in Space Technologies (RAST), 2013 6th International Conference on
Conference_Location :
Istanbul
Print_ISBN :
978-1-4673-6395-2
Type :
conf
DOI :
10.1109/RAST.2013.6581210
Filename :
6581210
Link To Document :
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