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Computational Electromagnetic-Aerodynamics - (IEEE Press RF and Microwave Technology) by Joseph J S Shang (Hardcover)

Computational Electromagnetic-Aerodynamics - (IEEE Press RF and Microwave Technology) by  Joseph J S Shang (Hardcover) - 1 of 1
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Highlights

  • Presents numerical algorithms, procedures, and techniques required to solve engineering problems relating to the interactions between electromagnetic fields and fluid flow and interdisciplinary technology for aerodynamics, electromagnetics, chemical-physic kinetics, and plasmadynamics Integrates interlinking computational model and simulation techniques of aerodynamics and electromagnetics Combines classic plasma drift-diffusion theory and electron impact ionization modeling for electromagnetic-aerodynamic interactions Describes models of internal degrees of freedom for vibration relaxation and electron excitations
  • About the Author: Joseph Shang is a Research Professor Emeritus at Wright State University, USA, and a Scientist Emeritus at the Air Force Research Laboratory.
  • 448 Pages
  • Technology, Electronics
  • Series Name: IEEE Press RF and Microwave Technology

Description



Book Synopsis



Presents numerical algorithms, procedures, and techniques required to solve engineering problems relating to the interactions between electromagnetic fields and fluid flow and interdisciplinary technology for aerodynamics, electromagnetics, chemical-physic kinetics, and plasmadynamics
  • Integrates interlinking computational model and simulation techniques of aerodynamics and electromagnetics
  • Combines classic plasma drift-diffusion theory and electron impact ionization modeling for electromagnetic-aerodynamic interactions
  • Describes models of internal degrees of freedom for vibration relaxation and electron excitations



From the Back Cover



Presents numerical algorithms, procedures, and techniques required to solve engineering problems relating to the interactions between electromagnetic fields, fluid flow, and interdisciplinary technology for aerodynamics, electromagnetics, chemical-physics kinetics, and plasmadynamics

This book addresses modeling and simulation science and technology for studying ionized gas phenomena in engineering applications. Computational Electromagnetic-Aerodynamics is organized into ten chapters. Chapter one to three introduce the fundamental concepts of plasmadynamics, chemical-physics of ionization, classical magnetohydrodynamics, and their extensions to plasma-based flow control actuators, high-speed flows of interplanetary re-entry, and ion thrusters in space exploration. Chapter four to six explain numerical algorithms and procedures for solving Maxwell's equation in the time domain for computational electromagnetics, plasma wave propagation, and the time-dependent compressible Navier-Stokes equation for aerodynamics. The concluding chapters discuss developments in computational electromagnetic-aerodynamics for multi-fluid models, including chemical kinetics by nonequilibrium thermal excitations, and chemical-physics by electron impact ionization.

  • Integrates interlinking computational model and simulation techniques of aerodynamics and electromagnetics
  • Combines classic plasma drift-diffusion theory and electron impact ionization modeling for electromagnetic-aerodynamic interactions
  • Describes models of internal degrees of freedom for vibration relaxation and electron excitations

This book is intended for aerospace researcher and engineers, as well as graduate students in preparation for thesis and dissertation research.

Joseph Shang is a Research Professor Emeritus at Wright State University, USA, and a Scientist Emeritus at the Air Force Research Laboratory. He received his PhD in Aerospace Engineering from Ohio State University. Dr. Shang is a pioneer of Computational Fluid Dynamics (CFD) and Computational Electromagnetics (CEM), and led the development of three-dimensional, mass-averaged Navier-Stokes equations simulations for the aerodynamic performance of aerospace vehicles as well as the characteristic-based formulation for solving three-dimensional Maxwell equations in the time domain. He is a fellow of the American Institute of Aeronauts and Astronautics, and serves on the advisory board of the Aerospace Engineering Department. He has written nearly 400 articles and conference papers, as well as 14 book chapters.



About the Author



Joseph Shang is a Research Professor Emeritus at Wright State University, USA, and a Scientist Emeritus at the Air Force Research Laboratory. He received his PhD in Aerospace Engineering from Ohio State University. Dr. Shang is a pioneer of Computational Fluid Dynamics (CFD) and Computational Electromagnetics (CEM), and led the development of three-dimensional, mass-averaged Navier-Stokes equations simulations for the aerodynamic performance of aerospace vehicles as well as the characteristic-based formulation for solving three-dimensional Maxwell equations in the time domain. He is a fellow of the American Institute of Aeronauts and Astronautics, and serves on the advisory board of the Aerospace Engineering Department. He has written nearly 400 articles and conference papers, as well as 14 book chapters.

Dimensions (Overall): 9.3 Inches (H) x 6.2 Inches (W) x 1.1 Inches (D)
Weight: 1.85 Pounds
Suggested Age: 22 Years and Up
Series Title: IEEE Press RF and Microwave Technology
Sub-Genre: Electronics
Genre: Technology
Number of Pages: 448
Publisher: Wiley-IEEE Press
Theme: General
Format: Hardcover
Author: Joseph J S Shang
Language: English
Street Date: April 11, 2016
TCIN: 93120513
UPC: 9781119155928
Item Number (DPCI): 247-20-4340
Origin: Made in the USA or Imported
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Shipping details

Estimated ship dimensions: 1.1 inches length x 6.2 inches width x 9.3 inches height
Estimated ship weight: 1.85 pounds
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