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Aerodynamics for Engineering Students by E. L. Houghton , P. W. Carpenter Book Details
Book Name | Aerodynamics for Engineering Students |
Author | E. L. Houghton , P. W. Carpenter |
Category | Aeronautical Engineering Books, Education Books |
Book Language | English |
Pages | 718 |
Country | India |
Book Size | 10 MB |
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About Aerodynamics for Engineering Students by E. L. Houghton , P. W. Carpenter Book
Aerodynamics for Engineering Students" is a well-known textbook that provides a comprehensive introduction to the principles of aerodynamics specifically tailored for engineering students. Written by E. L. Houghton, P. W. Carpenter, and Steven H. Collicott, this book covers the fundamental concepts of aerodynamics and their applications in various engineering fields. It is widely used as a reference and textbook in aerospace engineering programs and related disciplines.
Here's an overview of what you might find in the book "Aerodynamics for Engineering Students":
Fundamental Concepts:
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Introduction to Aerodynamics: The book starts with an introduction to the basics of aerodynamics, including the types of flow, terminology, and key aerodynamic parameters.
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Fluid Mechanics Primer: The book provides a brief review of fluid mechanics concepts relevant to aerodynamics, including properties of fluids, flow equations, and boundary layers.
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Airfoil and Wing Theory: Detailed coverage of airfoil theory, lift and drag forces, and the principles of wing aerodynamics.
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Viscous Flow: Discussion of the effects of viscosity on flow behavior, including laminar and turbulent boundary layers.
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Compressible Flow: Introduction to compressible flow theory, including the concepts of Mach number, shock waves, and supersonic and hypersonic flow.
Applications and Engineering Aspects:
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Aircraft Performance: Coverage of topics related to aircraft performance, including takeoff, climb, cruise, and landing.
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Aircraft Stability and Control: Introduction to stability and control aspects of aircraft design, including longitudinal, lateral, and directional stability.
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Aircraft Design Considerations: Discussion of aerodynamic considerations in aircraft design, such as high-lift devices, winglets, and aerodynamic optimization.
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Wind Tunnel Testing: Introduction to wind tunnel testing techniques and how they are used to validate aerodynamic theories and designs.
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Aeroelasticity: Basic concepts of aeroelasticity, which involves the interaction between aerodynamic forces and structural dynamics.
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Propulsion and Jet Propulsion: An overview of aerodynamics related to propulsion systems, including jet engines and rocket propulsion.
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Introduction to Computational Fluid Dynamics (CFD): Brief introduction to the use of CFD in analyzing aerodynamic phenomena.
The book is known for its clear explanations, practical examples, and illustrations that aid in understanding complex aerodynamic concepts. It is suitable for undergraduate and early graduate students studying aerospace engineering or related disciplines. "Aerodynamics for Engineering Students" serves as a foundational resource that equips students with the knowledge necessary to analyze and design aerodynamic systems and components for various engineering applications, from aircraft to spacecraft and beyond.
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