Introduction to Transonic Aerodynamics

Nonfiction, Science & Nature, Technology, Engineering, Mechanical, Aeronautics & Astronautics
Cover of the book Introduction to Transonic Aerodynamics by Roelof Vos, Saeed Farokhi, Springer Netherlands
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Author: Roelof Vos, Saeed Farokhi ISBN: 9789401797474
Publisher: Springer Netherlands Publication: March 4, 2015
Imprint: Springer Language: English
Author: Roelof Vos, Saeed Farokhi
ISBN: 9789401797474
Publisher: Springer Netherlands
Publication: March 4, 2015
Imprint: Springer
Language: English

Written to teach students the nature of transonic flow and its mathematical foundation, this book offers a much-needed introduction to transonic aerodynamics. The authors present a quantitative and qualitative assessment of subsonic, supersonic and transonic flow around bodies in two and three dimensions. The book reviews the governing equations and explores their applications and limitations as employed in modeling and computational fluid dynamics.

Some concepts, such as shock and expansion theory, are examined from a numerical perspective. Others, including shock-boundary-layer interaction, are discussed from a qualitative point of view. The book includes 60 examples and more than 200 practice problems. The authors also offer analytical methods such as Method of Characteristics (MOC) that allow readers to practice with the subject matter.

The result is a wealth of insight into transonic flow phenomena and their impact on aircraft design, including compressibility effects, shock and expansion waves, shock-boundary-layer interaction and aeroelasticity.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

Written to teach students the nature of transonic flow and its mathematical foundation, this book offers a much-needed introduction to transonic aerodynamics. The authors present a quantitative and qualitative assessment of subsonic, supersonic and transonic flow around bodies in two and three dimensions. The book reviews the governing equations and explores their applications and limitations as employed in modeling and computational fluid dynamics.

Some concepts, such as shock and expansion theory, are examined from a numerical perspective. Others, including shock-boundary-layer interaction, are discussed from a qualitative point of view. The book includes 60 examples and more than 200 practice problems. The authors also offer analytical methods such as Method of Characteristics (MOC) that allow readers to practice with the subject matter.

The result is a wealth of insight into transonic flow phenomena and their impact on aircraft design, including compressibility effects, shock and expansion waves, shock-boundary-layer interaction and aeroelasticity.

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