Advances in turbulence : selected papers from the XII spring school on transition and turbulence
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書誌事項
Advances in turbulence : selected papers from the XII spring school on transition and turbulence
(ABCM series on mechanical sciences and engineering)
Springer, c2023
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注記
Includes bibliographical references
内容説明・目次
内容説明
This book presents selected papers from the 12th edition of the Spring School of Transition and Turbulence which took place in 2020. The papers cover applications on a number of industrial processes, such as the automotive, aeronautics, chemicals, oil and gas, food, nanotechnology, and others. The readers find out research and applied works on the topics of aerodynamics, computational fluid dynamics, instrumentation and experiments, multi-phase flows, and theoretical and analytical modeling.
目次
Part I Computational Fluid Dynamics1. Dynamic Flow Structures In The Wake Of A Surface-Mounted Finite-Height Square Prism
2. The Turbulence Damping Effect On The Slug Flow Modeling
3. Large-Eddy Simulation Of Smooth Channel Flow With A Stochastic Wall Model
4. The Plunging Of Hyperpycnal Plumes On Tilted Bed By Three-Dimensional Large-Eddy Simulations
5. Numerical Investigation Of The Flow-Induced Noise In A Turbulent Flowinside An Hvac Duct
6. Simex Implementation On A Dns Code
7. Direct Numerical Simulation Of Bi-Disperse Particle-Laden Gravity Currents On Lock-Exchange Configuration With Different Schmidt Number
8. Turbulent Kinetic Energy Analysis In 2d Lid-Driven Cavity Flow At Re=100,000
Part II Aerodynamics
9. Investigation Of Transient Regime In Laminar Separation Bubble Formation
10. Simulation Of Laminar-To-Turbulent Transitional Flow Over Airfoils
11. Tollmien-Schlichting Waves Artificially Inserted In Boundary Layer By Harmonic Point Source
Part III Multi-Phase Flow
12. Investigation Of Turbulent Gas-Solid Flow Multi-Scale Dynamics In A Circulating Fluidized Bed Riser
13. Influence Of Ultrasonic Waves And Airfoil-Shaped Ring Baffles On The Gas-Solid Dispersion In A Cfb Riser
Part IV Instrumentation and Experiments
14. Estimation Of The Energy Dissipation Rate In A Stirred Tank By 2d Piv Measurements
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