Radiative Characteristics of Carbonaceous Ablation Layers with Reflection Effects
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概要
- 論文の詳細を見る
The equilibrium composition and spectral absorption coefficient of SiC ablation layer plasmas have been calculated for temperature of 5000 to 7000 K, layer thickness of 0 to 7.5mm, and pressure of 0.1 to 1.0MPa. The radiations included were molecular bands, atomic lines, and continuum processes. The absorption coefficient thus calculated was applied to a simplified shock layer model for the Jupiter entry probe to investigate the effectiveness of the ablation layer in reducing the radiative heating from a shock layer to a body surface. It was found that the SiC ablation layer is very effective to protect the body from radiative heating and that the photoionization processes of atomic carbon and silicon were mainly responsible for radiative absorption at high photon energy range. Furthermore the molecular carbon bands were effectively absorptive in relatively low photon energy range, particularly at low temperatures.
- 一般社団法人日本機械学会の論文
- 2001-08-15
著者
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SHIRAI Hiroyuki
Department of Chemistry, School of Science, Tokai University
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Shirai Hiroyuki
Departement Of Integrated Biosciences Graduate School Of Fronteir Sciences
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Shirai Hiroyuki
Department Of Mechanical System Engineering School Of Engineering Gunma University
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KASUYA Koichi
Department of Energy Sciences,Tokyo Institute of Technology
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Kasuya Koichi
Department Of Electrical Engineering Faculty Of Engineering Osaka University
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Kasuya Koichi
Department Of Energy Sciences Interdisciplinary Graduate School Of Science And Engineering Tokyo Ins
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Shirai H
Department Of Mechanical System Engineering School Of Engineering Gunma University
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FUNATSU Masato
Department of Mechanical System Engineering, School of Engineering, Gunma University
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Funatsu Masato
Department Of Mechanical System Engineering School Of Engineering Gunma University
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