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Progress in Turbulence 2005 ed. [Hardback]

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  • Formāts: Hardback, 228 pages, height x width: 235x155 mm, weight: 1140 g, XI, 228 p., 1 Hardback
  • Sērija : Springer Proceedings in Physics 101
  • Izdošanas datums: 10-Feb-2005
  • Izdevniecība: Springer-Verlag Berlin and Heidelberg GmbH & Co. K
  • ISBN-10: 3540232168
  • ISBN-13: 9783540232162
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  • Formāts: Hardback, 228 pages, height x width: 235x155 mm, weight: 1140 g, XI, 228 p., 1 Hardback
  • Sērija : Springer Proceedings in Physics 101
  • Izdošanas datums: 10-Feb-2005
  • Izdevniecība: Springer-Verlag Berlin and Heidelberg GmbH & Co. K
  • ISBN-10: 3540232168
  • ISBN-13: 9783540232162
Citas grāmatas par šo tēmu:
Besides turbulence, there is hardly any other scientific topic which has been considered a prominent scientific challenge for such a long time. The special interest in turbulence is not only based on it being a difficult scientific problem but also on its meaning in the technical world and our daily life. This carefully edited book comprises recent basic research as well as research related to the applications of turbulence. Therefore, both leading engineers and physicists working in the field of turbulence were invited to the iTi Conference on Turbulence held in Bad Zwischenahn, Gemany 21st - 24th of September 2003. Topics discussed include, for example, scaling laws and intermittency, thermal convection, boundary layers at large Reynolds numbers, isotropic turbulence, stochastic processes, passive and active scalars, coherent structures, numerical simulations, and related subjects.
Part I Mathematical Methods
Passive Scalar Diffusion as a Damped Wave
3(4)
Axel Brandenburg
Petri J. Kapyla
Amjed Mohammed
Extremalizing Vector Fields as Guides Toward Understanding Properties of Turbulence
7(4)
F.H. Busse
Low-Wavenumber Forcing and Turbulent Energy Dissipation
11(8)
Charles R. Doering
Nikola P. Petrov
New Potential Symmetries for a Generalised Inhomogeneus Nonlinear Diffusion Equation
19(4)
M. L. Gandarias
S. Saez
DNS and New Scaling Laws of ZPG Turbulent Boundary Layer Flow
23(4)
G. Khujadze
M. Oberlack
Linear Instability of a Slowly Divergent Planar Jet
27(4)
Polina Landa
Vadim Ushakov
Jurgen Kurths
On How Different Are Genuine and `Passive' Turbulence
31(6)
Arkady Tsinober
Upper Bound on the Heat Transport in a Heated From Below Fluid Layer
37(6)
Nikolay K. Vitanov
Part II Scaling Laws and Intermittency
Symmetries and Boundary Layer Profiles for Scalar Fields
43(4)
Jahanshah Davoudi
Bruno Eckhardt
Energy and Dissipation Balances in Rotating Flows
47(4)
Bruno Eckhardt
Siegfried Grossmann
Detlef Lohse
Turbulent Cascade with Intermittency in View of Fragmentation Universalities
51(4)
Mikhael Gorokhovski
Vladimir Saveliev
Observational Impact of Surrogacy on the Turbulent Energy Cascade
55(4)
Martin Greiner
Jochen Cleve
Jorg Schumacher
Katepalli R. Sreenivasan
Conditional Statistics of Velocity Increments in Fully Developped Turbulence
59(4)
Antoine Naert
A Simple Relation Between Longitudinal and Transverse Increments
63(4)
Malte Siefert
Joachim Peinke
Rudolf Friedrich
Intermittency Exponent in High-Reynolds Number Turbulence
67(6)
Yoshiyuki Tsuji
Part III Modelling
An Alternative Model for Turbulent Flow and Forced Convection
73(4)
Stuart W. Churchill
Langevin Models of Turbulence
77(10)
B. Dubrulle
J-P. Laval
S. Nazarenko
Renormalized Perturbation Theory for Lagrangian Turbulence
87(4)
Rudolf Friedrich
Rafaela C. Hillerbrand
Modelling of the Pressure-Strain- and Diffusion-Term in Rotating Flows
91(4)
S. Guenther
M. Oberlack
Predicting Probability for Stochastic Processes with Local Markov Property
95(4)
Holger Kantz
Detlef Holstein
Mario Ragwitz
Nikolay K. Vitanov
Stability of Turbulent Kolmogorov Flow
99(4)
Bernard Legras
Barbara Villone
Conditional Moment Closure Based on Two Conditioning Variables
103(4)
Jorge R. Lozada Ramirez
W. Kendal Bushe
Andrea Frisque
Stochastic Partial Differential Equations as a Tool for Solving PDF Equations
107(4)
Vladimir Sabel'nikov
Olivier Soulard
Non-unique Self-similar Turbulent Boundary Layers in the Limit of Large Reynolds Number
111(6)
B Scheichl
A Kluwick
Part IV Experiments
Two-Point-Correlations in a Zero Pressure Gradient Boundary Layer at Reθ = 54600
117(4)
R. Abstiens
W.A. El-Askary
W. Schroder
Measurements Over a Flat Plate With and Without Suction
121(4)
Amit Agrawal
Lyazid Djenidi
R.A. Antonia
MHD Taylor-Couette Flow for Small Magnetic Prandtl Number and With Hall Effect
125(4)
Rainer Arlt
Gunther Rudiger
Laser-Cantilever-Anemometer
129(4)
S. Barth
H. Koch
J. Peinke
J. Burgold
H. Wurmus
Heteroclinic Cycles of Type II in the (2,3) Interaction in the GEOFLOW-Experiment
133(4)
P. Beltrame
C. Egbers
Experimental Visualization of Streamwise Streaks in the Boundary Layers of Rayleigh-Benard Convection
137(6)
Tomi Haramina
Andreas Tilgner
Spatial Correlations in Turbulent Shear Flows
143(4)
A. Jachens
B. Eckhardt
K. Knobloch
H.-H. Fernholz
Hot-Wire and PIV Measurements in a High-Reynolds Number Turbulent Boundary Layer
147(4)
K. Knobloch
H.-H. Fernholz
Dynamics of Baroclinic Instabilities Using Methods of Nonlinear Time Series Analysis
151(4)
Th. von Larcher
C. Egbers
Fabrication and Characterization of Miniaturized Thermocouples for Measurements in Flows
155(4)
M. Munzel
A. Kittel
Temperature and Velocity Measurements in a Large-Scale Rayleigh-Benard Experiment
159(4)
C. Resagk
R. du Puits
F.H. Busse
A. Thess
A. Tilgner
Statistics and Scaling of the Velocity Field in Turbulent Thermal Convection
163(10)
Ke-Qing Xia
Sheng-Qi Zhou
Chao Sun
Part V Simulation (DNS and LES)
Nonlinear Stochastic Estimation: A Tool for Deriving Appropriate Wall Models for LES
173(4)
M. Abel
D. Stojkovic
M. Breuer
Generation of Mean Flows in Turbulent Convection
177(4)
T. Hartlep
A. Tilgner
Control of a Turbulent Separation Bubble by Periodic Excitation
181(4)
Astrid H. Herbst
Dan S. Henningson
Stretching Rate of Passive Lines in Turbulence
185(6)
Shigeo Kida
Numerical Study of Particle Motion in a Turbulent Ribbed Channel Flow
191(4)
G. Lo Iacono
P.G. Tucker
A Fresh Approach to Large Eddy Simulation of Turbulence
195(8)
R.D. Moser
P. Zandonade
P. Vedula
Statistical Analysis of Turbulent Natural Convection in Low Prandtl Number Fluids
203(4)
I. Otic
G. Grotzbach
Computational Simulation of Transitional and Turbulent Shear Flows
207(8)
P. Schlatter
S. Stolz
L. Kleiser
Direct Numerical Simulations of Turbulent Rayleigh-Benard Convection in Wide Cylinders
215(4)
O. Shishkina
C. Wagner
A Projective Similarity/Eddy-Viscosity Model for Large-Eddy Simulation
219(4)
Roel Verstappen
Passive Scalar Transport in Turbulent Supersonic Channel Flow
223
Holger Foysi
Rainer Friedrich