Aerodynamics, including: Fluid Dynamics, Lift (force), Laminar Flow, Mach Number, Wind Generator, Wing, Area Rule, Thrust, Wind Tunnel, Navier-stokes Equations, Hypersonic, Planform, Supersonic, Bernoullis Principle, Aeroelasticity, Biot-savart Law Hephaestus Books

ISBN: 9781243238382

Published: August 31st 2011

Paperback

822 pages


Description

Aerodynamics, including: Fluid Dynamics, Lift (force), Laminar Flow, Mach Number, Wind Generator, Wing, Area Rule, Thrust, Wind Tunnel, Navier-stokes Equations, Hypersonic, Planform, Supersonic, Bernoullis Principle, Aeroelasticity, Biot-savart Law  by  Hephaestus Books

Aerodynamics, including: Fluid Dynamics, Lift (force), Laminar Flow, Mach Number, Wind Generator, Wing, Area Rule, Thrust, Wind Tunnel, Navier-stokes Equations, Hypersonic, Planform, Supersonic, Bernoullis Principle, Aeroelasticity, Biot-savart Law by Hephaestus Books
August 31st 2011 | Paperback | PDF, EPUB, FB2, DjVu, talking book, mp3, RTF | 822 pages | ISBN: 9781243238382 | 10.58 Mb

Please note that the content of this book primarily consists of articles available from Wikipedia or other free sources online. Hephaestus Books represents a new publishing paradigm, allowing disparate content sources to be curated into cohesive,MorePlease note that the content of this book primarily consists of articles available from Wikipedia or other free sources online.

Hephaestus Books represents a new publishing paradigm, allowing disparate content sources to be curated into cohesive, relevant, and informative books. To date, this content has been curated from Wikipedia articles and images under Creative Commons licensing, although as Hephaestus Books continues to increase in scope and dimension, more licensed and public domain content is being added.

We believe books such as this represent a new and exciting lexicon in the sharing of human knowledge. This particular book is a collaboration focused on Aerodynamics.More info: Aerodynamics is a branch of dynamics concerned with studying the motion of air, particularly when it interacts with a moving object. Aerodynamics is a subfield of fluid dynamics and gas dynamics, with much theory shared between them. Aerodynamics is often used synonymously with gas dynamics, with the difference being that gas dynamics applies to all gases.

Understanding the motion of air (often called a flow field) around an object enables the calculation of forces and moments acting on the object. Typical properties calculated for a flow field include velocity, pressure, density and temperature as a function of position and time. By defining a control volume around the flow field, equations for the conservation of mass, momentum, and energy can be defined and used to solve for the properties.

The use of aerodynamics through mathematical analysis, empirical approximations, wind tunnel experimentation, and computer simulations form the scientific basis for heavier-than-air flight.



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