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Separated and Vortical Flow in Aircraft Wing Aerodynamics

Fluid mechanical aspects of separated and vortical flow in aircraft wing aerodynamics are treated. The focus is on two wing classes: (1;

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Advanced UAV Aerodynamics, Flight Stability and Control

. Topics included cover a wide range of new aerodynamics concepts and their applications for real world fixed-wing (airplanes), rotary wing;

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Rotary-Wing Aerodynamics

respected practicing engineers and authors W. Z. Stepniewski and C. N. Keys to write one. The result: Rotary-Wing Aerodynamics, a clear, concise;

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Theoretical & Computational Aerodynamics

, streamwise and cross-flow instability over swept wings, viscous transonic flow over airfoils, low Reynolds number aerodynamics, high lift devices and;

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Boundary Value Problems for Transonic Flow

of numerical methods for simulation of transonic flow and aircraft design depends on developments in the underlying mathematical theory. This book;

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Helicopter Aerodynamics

rotary-wing aerodynamics, with applications to helicopters, and application of the relevant principles to the aerodynamic design of a helicopter;

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Principles of Helicopter Aerodynamics

principles of helicopters and other rotating-wing vertical lift aircraft such as tilt rotors and autogiros. The text begins with a unique technical;

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Aircraft Structures

and wing and fatigue are explained. The third section covers additional topics, such as finite element analysis, aircraft construction;

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PBS Illustrated Guide To Aerodynamics

flight, as well as the latest advances in laminar flow airfoils, wing and fuselage design, and high-performance lightplanes. Question and answer;

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Asymptotic Theory of Supersonic Viscous Gas Flows

supersonic flows. These complex problems are central to the work of researchers and engineers dealing with new aircraft and turbomachinery;

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Fundamentals of Modern Unsteady Aerodynamics

incompressible flow to hypersonics. The book also covers modern topics related to the developments made in recent years, especially in relation to wing;

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Fundamentals of Modern Unsteady Aerodynamics

incompressible flow to hypersonics. The book also covers modern topics related to the developments made in recent years, especially in relation to wing;

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Aerodynamic Components of Aircraft at High Speeds

aircraft. Sections of the volume include: aerodynamics of wings at high speed, aerodynamics of bodies at high speed, interaction problems;

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Aerodynamic Components of Aircraft at High Speeds

aircraft. Sections of the volume include: aerodynamics of wings at high speed, aerodynamics of bodies at high speed, interaction problems;

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Foundations of Aerodynamics

of aerodynamics. Numerical techniques are described for computing invicid incompressible flow about airfoils and finite wings. Plus, the design of devices;

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Fixed and Flapping Wing Aerodynamics for Micro Air Vehicle Applications

the latest research in the area of aerodynamic efficiency of various fixed-wing, flapping wing, and rotary wing concepts. It presents the;

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Propeller Aerodynamics

aware of to safely handle the aircraft they are flying. Incorrect propeller handling can cause damage to the aircraft and reduce performance;

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Rotorcraft Aeromechanics

A rotorcraft is a class of aircraft that uses large-diameter rotating wings to accomplish efficient vertical take-off and landing. The;

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The Enigma of the Aerofoil

Why do aircraft fly? How do their wings support them? In the early years of aviation, there was an intense dispute between British and;

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The Enigma of the Aerofoil

Why do aircraft fly? How do their wings support them? In the early years of aviation, there was an intense dispute between British and;

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The Aerodynamic Design of Aircraft

of aircraft based on the character of flow involved. Each class is suitable for a distinct cruise speed regime: classical and swept aircraft for;

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Small Unmanned Aircraft

guidance of fixed-wing unmanned aircraft, and enables all students with an introductory-level background in controls or robotics to enter this;

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Introduction to Transonic Aerodynamics

result is a wealth of insight into transonic flow phenomena and their impact on aircraft design, including compressibility effects, shock and;

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Aircraft Dynamics: From Modeling to Simulation

Napolitano's Aircraft Dynamics is designed to help readers extrapolate from low level formulas, equations, and details to high level;

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Basic Helicopter Aerodynamics

is expanded to include both flapping, lagging and ground resonance. New material is included on blade tip design, flow characteristics surrounding the;

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Management and Minimisation of Uncertainties and Errors in Numerical Aerodynamics

Aerodynamics), which combined development activities of the German Aerospace Center (DLR), German universities and German aircraft industry. The main;

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Boundary-Layer Theory

theory and its application to all areas of fluid mechanics, with particular emphasis on the flow past bodies (e.g. aircraft aerodynamics). The;

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