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This special volume contains several articles written in honour of
Professor IngolfTeipel on the occasion of his 65th birthday.
Professor Teipel was born on March 15th, 1933 in Wissen/Sieg. He
started his school career in Betzdorf/Sieg. From 1943 to 1951 he
went to the Gymnasium in Betzdorf, where he obtained his
school-leaving exam after only 8 years. In 1951 Professor Teipel
started his studies in Mechanical Engineering at the Technical
University of Aachen and got his diploma at the Aerodynamic
Institute in 1956. Then Professor Teipel decided to join the
research group of the Institute of Theoretical Gasdynamics at the
Deutsche Versuchsanstalt fiir Luft und Raumfahrt (DVL), the famous
institute of Professor Oswatitsch, where he spent about 13 years
until 1968. At the Technical University of Aachen he finished his
dissertation devoted to spherical-symmetric shock waves and he
obtained his doctorate in Mechanical Engineering in 1960. Some
years later he went as a guest scientist to the Aerospace
Laboratories of Dayton, Ohio, USA. In 1965 Professor Teipel fmished
his habilitation work with a paper on unsteady transonic pressure
forces at the Technical University of Aachen, where he recieved the
venia legendi in fluid mechanics. In this year, Professor Teipel
was given the freedom of the state Tennessee, USA."
This book is devoted to recent developments in the field of
rotating fluids, in particular the study of Taylor--Couette flow,
spherical Couette flow, planar Couette flow, as well as rotating
annulus flow. Besides a comprehensive overview of the current state
of the art, possible future directions in this research field are
investigated. The first part of this volume presents several new
results in the classical Taylor--Couette system covering diverse
theoretical, experimental and numerical work on bifurcation theory,
influence of boundary conditions, counter-rotating flows, spiral
vortices and many others. The second part focuses on spherical
Couette flows, including isothermal flows, thermal convective
motion, as well as magnetohydrodynamics in spherical shells. The
remaining parts are devoted to Goertler vortices, rotating annulus
flows, as well as superfluid Couette flows. The present book will
be of interest to all researchers and graduate students working
actively in the field.
This book is devoted to recent developments in the field of
rotating fluids, in particular the study of Taylor--Couette flow,
spherical Couette flow, planar Couette flow, as well as rotating
annulus flow. Besides a comprehensive overview of the current state
of the art, possible future directions in this research field are
investigated. The first part of this volume presents several new
results in the classical Taylor--Couette system covering diverse
theoretical, experimental and numerical work on bifurcation theory,
influence of boundary conditions, counter-rotating flows, spiral
vortices and many others. The second part focuses on spherical
Couette flows, including isothermal flows, thermal convective
motion, as well as magnetohydrodynamics in spherical shells. The
remaining parts are devoted to Goertler vortices, rotating annulus
flows, as well as superfluid Couette flows. The present book will
be of interest to all researchers and graduate students working
actively in the field.
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