Cart
Free US shipping over $10
Proud to be B-Corp

Energy Deposition for High-Speed Flow Control Doyle D. Knight (Rutgers University, New Jersey)

Energy Deposition for High-Speed Flow Control By Doyle D. Knight (Rutgers University, New Jersey)

Energy Deposition for High-Speed Flow Control by Doyle D. Knight (Rutgers University, New Jersey)


$217.79
Condition - New
Only 2 left

Summary

Presents a novel method for controlling high speed flows past aerodynamic shapes using energy deposition via direct current (DC), laser or microwave discharge. This research volume is perfect for those looking for a detailed description of these topics with examples of practical application in high-speed aerodynamics.

Energy Deposition for High-Speed Flow Control Summary

Energy Deposition for High-Speed Flow Control by Doyle D. Knight (Rutgers University, New Jersey)

Written by a leading expert in the field, this book presents a novel method for controlling high-speed flows past aerodynamic shapes using energy deposition via direct current (DC), laser or microwave discharge, and describes selected applications in supersonic and hypersonic flows. Emphasizing a deductive approach, the fundamental physical principles provided give an understanding of the simplified mathematical models derived therefrom. These features, along with an extensive set of 55 simulations, make the book an invaluable reference that will be of interest to researchers and graduate students working in aerospace engineering and in plasma physics.

About Doyle D. Knight (Rutgers University, New Jersey)

Doyle D. Knight is Distinguished Professor of Aerospace and Mechanical Engineering at Rutgers University, New Jersey. His research interests include gas dynamics and design optimization. His research in gas dynamics includes shock wave boundary layer interaction, incipient separation on pitching airfoils, turbulence model development, high speed inlet unstart and effects of unsteady energy deposition in supersonic flows. His research activity in design optimization focuses on the application of computational fluid dynamics to the automated optimal design of high speed air vehicles. He is the author of Elements of Numerical Methods for Compressible Flows (Cambridge, 2006).

Table of Contents

1. Introduction; 2. Fundamental equations; 3. Statistical mechanics and continuum physics; 4. Dynamics and kinetics pacetoken of charged particles; 5. DC discharge; 6. Microwave discharge; 7. Laser discharge; 8. Modeling energy deposition pacetoken as an ideal gas; 9. Flow control in aerodynamics.

Additional information

NPB9781107123052
9781107123052
1107123054
Energy Deposition for High-Speed Flow Control by Doyle D. Knight (Rutgers University, New Jersey)
New
Hardback
Cambridge University Press
2019-02-21
462
N/A
Book picture is for illustrative purposes only, actual binding, cover or edition may vary.
This is a new book - be the first to read this copy. With untouched pages and a perfect binding, your brand new copy is ready to be opened for the first time

Customer Reviews - Energy Deposition for High-Speed Flow Control