Boundary Value Problems for Transonic Flow
Transonic flow
occurs around moving objects as they approach and cross the sound barrier. Serious
problems can occur at this point, such as shock-induced flow separation which
can cause the aircraft to spin out of control. Another important practical problem
is the achievement of higher aerodynamic performance of aircraft at cruise conditions,
which leads to considerable fuel savings. The success in application of numerical
methods for simulation of transonic flow and aircraft design depends on developments
in the underlying mathematical theory.
This book presents a breakthrough in the solvability analysis of boundary value
problems, which makes it possible to establish convergence of finite element
approximations for shock-free flow and to provide a framework for putting the
existing numerical methods on a more sound basis. Also, physical aspects concerned
with patterns of formation and propagation of weak shock waves are analysed.
This contributes to the understanding of the extreme sensitivity of transonic
flow to perturbation of freestream conditions. The developed theoretical knowledge
base yields promising concepts of the airfoil design and active flow control
by airfoil/wing shape modifications or suction/blowing through a perforated
surface.
Boundary Value Problems for Transonic Flow
* Focuses on Computational Fluid Dynamics.
* Addresses practical problems, such as airfoil design and flow control.
* Presents developments made in the last two decades.
In essence this is a much needed monograph for researchers and engineers in
applied mathematics and numerical analysis applied to aerodynamics and for algorithm
developers in Computational Fluid Dynamics in the aircraft industry. It gives
design engineers the underlying mathematical theory necessary for developing
new concepts for airfoil/wing design and flow control.