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Hypersonic Aerodynamics and Heat Transfer
Chapter 14: Mathematical Modeling of Heat and Mass Transfer during Aerothermochemical Destruction of Thermal Protection Materials
Hypersonic Aerodynamics and Heat Transfer
ISBN Druckformat:
978-1-56700-309-3
ISBN Online:
978-1-56700-287-4
Sergey Vladimirovich Utyuzhnikov
The University of Manchester, Oxford Road, Manchester M13 9PL, United Kingdom
G. A. Tirskiy
Moscow Institute for Physics and Technology, Moscow, Russia
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Chapter 14: Mathematical Modeling of Heat and Mass Transfer during Aerothermochemical Destruction of Thermal Protection Materials
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Inhaltsverzeichnis
14.1: Introduction
14.2: Object of Research: Thermal Destruction of the Binder
14.3: Heterogeneous Chemical Interaction between Silica and Carbon in Internal Layers of the Material
14.4: Melting Ablation of Silica
14.5: Mechanical Ablation of Carbon and Gaseous Products of Material Destruction
14.6: Energy Conservation Equation
14.7: Sublimation of Condensed Components of the Material from the Wall
14.8: Heterogeneous Chemical Reactions Proceeding on the Wall
14.9: Ablation of Silica from the Wall
14.10: Ablation of Condensed Carbon from the Wall
14.11: Correlation Dependence between Rates of Destruction of Solid Species of the Material
14.12: System of Boundary Conditions on the Wall
14.13: System of Boundary Conditions on the Front of Primary Pyrolysis of the Binder
Acknowledgments
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