Theoretical Effects of Reentry Aerodynamic Heating on the External Skin Structure of Amrad Experiment Number One

Theoretical Effects of Reentry Aerodynamic Heating on the External Skin Structure of Amrad Experiment Number One
Author: W. G. Burleson
Publisher:
Total Pages: 40
Release: 1965
Genre:
ISBN:

Calculated reentry aerodynamic heating effects on the external skin of an ICBM reentry test vehicle having a relatively low weight-to-drag ratio are presented in this report. The vehicle is a blunt cone with the aft portion designed to fail just after maximum heating and the forward portion designed to survive to impact. The tape-wound, reinforced plastic heat shield is subjected to maximum reentry heating rates between 1,250,000 and 6,500,00 kcal/sq m hr. Resulting external and internal surface temperature histories are given. Effects of extreme trajectory, vehicle characteristics, and atmosphere variations on the aluminum substructure temperature histories are discussed. (Author).

NASA Scientific and Technical Reports

NASA Scientific and Technical Reports
Author: United States. National Aeronautics and Space Administration Scientific and Technical Information Division
Publisher:
Total Pages: 2300
Release: 1967
Genre: Aeronautics
ISBN:

Aerodynamic Heating in Supersonic and Hypersonic Flows

Aerodynamic Heating in Supersonic and Hypersonic Flows
Author: Mostafa Barzegar Gerdroodbary
Publisher: Elsevier
Total Pages: 248
Release: 2022-10-11
Genre: Technology & Engineering
ISBN: 0323972233

Aerodynamic Heating in Supersonic and Hypersonic Flows: Advanced Techniques for Drag and Aero-heating Reduction explores the pros and cons of different heat reduction techniques on other characteristics of hypersonic vehicles. The book begins with an introduction of flow feature around the forebody of space vehicles and explains the main parameters on drag force and heat production in this region. The text then discusses the impact of severe heat production on the nose of hypervelocity vehicles, different reduction techniques for aerodynamic heating, and current practical applications for forebody shock control devices. Delivers valuable insight for aerospace engineers, postgraduate students, and researchers. Presents computational results of different cooling systems for drag and heat reduction around nose cones Explains mechanisms of drag reduction via mechanical, fluidic, and thermal systems Provides comprehensive details about the aerodynamics of space vehicles and the different shock features in the forebody of super/hypersonic vehicles Describes how numerical simulations are used for the development of the current design of forebody of super/hypersonic vehicles