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Journal of Aerospace Science and Technology، جلد ۱۵، شماره ۱، صفحات ۴۹-۶۰

عنوان فارسی Numerical calculation of radiation heating of the hypersonic nose in the reentry phase
چکیده فارسی مقاله The calculation of aerodynamic heating is one of the most important steps in designing high speed flying bodies, especially reentry bodies. Because ignoring that, it can damage the thermal protection system and cut off the radar connections to the reentry capsule. Due to the high speed of the capsule and the lack of a material medium, the radiation heat transfer rate is important in comparison to the convection heat transfer rate of the displacement in determining the total thermal flux, and ignoring it in the calculations caused many errors in the determination of the total heat flux . In this paper, various parameters affecting the heat transfer rate of the nose of the reentry capsule have been investigated. To calculate the capsule nose radiation, a theoretical method is presented which is compared with the reference simulation results to confirm its correctness. In this simulation, the heat transfer rate of the Apollo4  capsule has been investigated. Due to the low optical thickness of the model, the DO radiation model is used to simulate CFD. This simulation was carried out using Fluent software version 16 and solved with a laminar flow of gray gas and non-gray gas. The results show that the radiation heat transfer rate in non-gray gas mode is lower error than the gray gas state, and it is also observed that at high altitudes, the radiation transfer rate is 80% of the total heat transfer rate.
کلیدواژه‌های فارسی مقاله

عنوان انگلیسی Numerical calculation of radiation heating of the hypersonic nose in the reentry phase
چکیده انگلیسی مقاله The calculation of aerodynamic heating is one of the most important steps in designing high speed flying bodies, especially reentry bodies. Because ignoring that, it can damage the thermal protection system and cut off the radar connections to the reentry capsule. Due to the high speed of the capsule and the lack of a material medium, the radiation heat transfer rate is important in comparison to the convection heat transfer rate of the displacement in determining the total thermal flux, and ignoring it in the calculations caused many errors in the determination of the total heat flux . In this paper, various parameters affecting the heat transfer rate of the nose of the reentry capsule have been investigated. To calculate the capsule nose radiation, a theoretical method is presented which is compared with the reference simulation results to confirm its correctness. In this simulation, the heat transfer rate of the Apollo4  capsule has been investigated. Due to the low optical thickness of the model, the DO radiation model is used to simulate CFD. This simulation was carried out using Fluent software version 16 and solved with a laminar flow of gray gas and non-gray gas. The results show that the radiation heat transfer rate in non-gray gas mode is lower error than the gray gas state, and it is also observed that at high altitudes, the radiation transfer rate is 80% of the total heat transfer rate.
کلیدواژه‌های انگلیسی مقاله Radiation,capsule,Gray gas,Non-gray gas,Do radiation model

نویسندگان مقاله Sajad Ghasemlooy |
Malek Ashtar University, Tehran, Iran

Mahsa Dehnamaki |
Faculty of Aerospace Engineering , MalekAshtar University, Tehran,Iran

Hamid Parhizkar |
Faculty of Aerospace Engineering , MalekAshtar University, Tehran,Iran


نشانی اینترنتی https://jast.ias.ir/article_140194_86902d00a12ea42b586479ddb5b1c553.pdf
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