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Selected Aerothermodynamic Design Problems of Hypersonic Flight Vehicles [electronic resource] / by Ernst Heinrich Hirschel, Claus Weiland.

By: Contributor(s): Material type: TextTextPublisher: Berlin, Heidelberg : Springer Berlin Heidelberg, 2009Description: online resourceContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9783540899747
Subject(s): Additional physical formats: Printed edition:: No titleDDC classification:
  • 629.2 23
LOC classification:
  • TL1-483
Online resources:
Contents:
Short Introduction to Flight Trajectories for Aerothermodynamicists -- Aerothermodynamic Design Problems of Winged Re-Entry Vehicles -- Aerothermodynamic Design Problems of Winged Airbreathing Vehicles -- Aerothermodynamic Design Problems of Non-Winged Re-Entry Vehicles -- Stabilization, Trim, and Control Devices -- Forces, Moments, Center-of-Pressure, Trim, and Stability in General Formulation -- Multidisciplinary Design Aspects -- The Thermal State of a Hypersonic Vehicle Surface -- The ?eff Approach and Approximate Relations for the Determination of Aerothermodynamic Parameters -- Solution Guide and Solutions of the Problems.
In: Springer eBooksSummary: This volume addresses selected aerothermodynamic design problems for three vehicle classes: winged reentry, non-winged reentry, and airbreathing hypersonic flight vehicles. Following an introductory chapter, the book presents the basics of flight trajectory mechanics, giving the aerothermodynamicist an understanding of the principal issues relevant to the field. In the following chapters, specific aerothermodynamic phenomena are discussed for the three vehicle classes, major simulation problems are singled out, and particular trends are examined. Available coefficients of longitudinal motion are presented for a variety of shapes of operational and studied vehicles, and aerothermodynamic issues of stabilization, trim, and control devices are treated. A full chapter is devoted to describing equations for aerodynamic forces, moments, center of pressure, trim, and stability. Another chapter focuses on multidisciplinary design aspects, presenting the mathematical models and the coupling procedures in detail. Other chapters address the thermal state of a vehicle surface, thermal loads, and thermal surface effects, which are among the major topics of hypersonic vehicle design. The governing equations for flow in thermo-chemical non-equilibrium are presented, along with properties of the earth’s atmosphere. Finally, constants and dimensions, symbol definitions, a glossary, acronyms, and a solution guide to problems are provided. This book will be a great boon to graduate students, doctoral students, design and development engineers, and technical managers alike.
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Short Introduction to Flight Trajectories for Aerothermodynamicists -- Aerothermodynamic Design Problems of Winged Re-Entry Vehicles -- Aerothermodynamic Design Problems of Winged Airbreathing Vehicles -- Aerothermodynamic Design Problems of Non-Winged Re-Entry Vehicles -- Stabilization, Trim, and Control Devices -- Forces, Moments, Center-of-Pressure, Trim, and Stability in General Formulation -- Multidisciplinary Design Aspects -- The Thermal State of a Hypersonic Vehicle Surface -- The ?eff Approach and Approximate Relations for the Determination of Aerothermodynamic Parameters -- Solution Guide and Solutions of the Problems.

This volume addresses selected aerothermodynamic design problems for three vehicle classes: winged reentry, non-winged reentry, and airbreathing hypersonic flight vehicles. Following an introductory chapter, the book presents the basics of flight trajectory mechanics, giving the aerothermodynamicist an understanding of the principal issues relevant to the field. In the following chapters, specific aerothermodynamic phenomena are discussed for the three vehicle classes, major simulation problems are singled out, and particular trends are examined. Available coefficients of longitudinal motion are presented for a variety of shapes of operational and studied vehicles, and aerothermodynamic issues of stabilization, trim, and control devices are treated. A full chapter is devoted to describing equations for aerodynamic forces, moments, center of pressure, trim, and stability. Another chapter focuses on multidisciplinary design aspects, presenting the mathematical models and the coupling procedures in detail. Other chapters address the thermal state of a vehicle surface, thermal loads, and thermal surface effects, which are among the major topics of hypersonic vehicle design. The governing equations for flow in thermo-chemical non-equilibrium are presented, along with properties of the earth’s atmosphere. Finally, constants and dimensions, symbol definitions, a glossary, acronyms, and a solution guide to problems are provided. This book will be a great boon to graduate students, doctoral students, design and development engineers, and technical managers alike.

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