Progress in Turbulence IX : Proceedings of the iTi Conference in Turbulence 2021 (Springer Proceedings in Physics) (2021)

個数:

Progress in Turbulence IX : Proceedings of the iTi Conference in Turbulence 2021 (Springer Proceedings in Physics) (2021)

  • 提携先の海外書籍取次会社に在庫がございます。通常3週間で発送いたします。
    重要ご説明事項
    1. 納期遅延や、ご入手不能となる場合が若干ございます。
    2. 複数冊ご注文の場合は、ご注文数量が揃ってからまとめて発送いたします。
    3. 美品のご指定は承りかねます。

    ●3Dセキュア導入とクレジットカードによるお支払いについて
  • 【入荷遅延について】
    世界情勢の影響により、海外からお取り寄せとなる洋書・洋古書の入荷が、表示している標準的な納期よりも遅延する場合がございます。
    おそれいりますが、あらかじめご了承くださいますようお願い申し上げます。
  • ◆画像の表紙や帯等は実物とは異なる場合があります。
  • ◆ウェブストアでの洋書販売価格は、弊社店舗等での販売価格とは異なります。
    また、洋書販売価格は、ご注文確定時点での日本円価格となります。
    ご注文確定後に、同じ洋書の販売価格が変動しても、それは反映されません。
  • 製本 Paperback:紙装版/ペーパーバック版/ページ数 315 p.
  • 言語 ENG
  • 商品コード 9783030807184

Full Description

This volume collects the edited and reviewed contribution presented in the 9th iTi Conference that took place virtually, covering fundamental and applied aspects in turbulence. In the spirit of the iTi conference, the volume is produced after the conference so that the authors had the opportunity to incorporate comments and discussions raised during the meeting.

In the present book, the contributions have been structured according to the topics:

I Experiments

II Simulations and Modelling

III Data Processing and Scaling

IV Theory

V Miscellaneous topics

Contents

1. Dynamic triad interactions and non-equilibrium Turbulence. Velte and Buchhave.- 2. Turbulent/turbulent entrainment. Kankanwadi and Buxton.- 3. Active Control of Turbulent Convective Heat Transfer with Plasma Actuators. Castellanos, Michelis, Discetti, Ianiro and Kotsonis.- 4. Mean Parameters of Incompressible Turbulent Boundary Layer with Zero Pressure Gradient on the Wall of the TsAGI T-128 Wind Tunnel at Very High Reynolds Numbers. Gorbushin, Osipova and Zametaev.- 5. Investigation of self-similarity of the temperature stratified turbulent boundary layer over the wavy surface in laboratory conditions. Sergeev, Troitskaya, Kandaurov and Vdovin.- 6. On similarity of turbulence statistics of a turbulent planar jet taking the static pressure into account. Ito, Ito, Alfredsson, Segalini and Matsubara.- 7. Mean velocity profiles over streamwise-aligned permeable ridhes. Okazaki, Takase, Kuwata and Sug.- 8. Energy dissipation and total entropy production in SHREK experiment. Kharche, Fuchs, Bon-Mardion, Moro, Rousset, Baudet, Peinke and Girard.- 9. The Filtering Approach as a tool for modeling and analyzing turbulence. Germano, Abbà, Cimarelli, Ferrero, Grinstein, Klein, Larocca, Saenz and Scovazzi.- 10. Dynamic Bridging for Coarse Grained Simulations of Turbulent Material Mixing. Grinstein, Saenz and Germano.- 11. Dynamic tensorial eddy viscosity and turbulent stresses. Abbá, Cimarelli and Germano.- 12. A numerical study of the spanwise turbulence past a cylinder flow. Ferrero, Larocca, Scovazzi and Germano.- 13. Asymmetry in wake of oscillating foils with combined pitching and heaving motion. Verma and Hemmati .- 14. Helical structures in the wake of long wall-mounted prisms at high incident angles. Zargar and Hemmati .- 15. A Spatially Accelerating Turbulent Flow with Longitudinally Moving Walls. Falcone and He.- 16. Dissimilarity between heat and momentum transfer of turbulent heat transfer over surfaces with hemisphere protrusions. Nagura, Kuwata and Suga.- 17. The diagnostic plot - a tutorial with a ten year perspective. Alfredsson, Segalini and Örlü.- 18. Bayesian Optimisation with Gaussian Process Regression Applied to Fluid Problems. Rezaeiravesh, Morita, Tabatabaei, Vinuesa, Fukagata and Schlatter.- 19. Data-driven dynamics description of a transitional boundary layer. Foroozan, Guerrero, Ianiro and Discetti.- 20. Identification of a stochastic Hopf bifurcation from stationary measurement data of a turbulent flow. Sieber, Paschereit and Oberleithner.- 21. Data-driven identification of robust low-order models for dominant dynamics in turbulent flows. Schubert, Sieber, Oberleithner, Martinuzzi.- 22. Experimental assessment of symmetry induced higher-moment scaling laws in turbulent pipe flow. Zimmerman, Klewicki and Oberlack.- 23. Characteristics of Reynolds shear stress in Adverse Pressure Gradient Turbulent Boundary Layers. Romero, Zimmerman, Philip and Klewicki.- 24. Energy transfer in turbulent boundary layers withadverse pressure gradient. Gungor, Gungor and Maciel.- 25. Influence of rough surface morphology on boundary layer flow. Jurcáková, Procházka, Kellnerová, Antoš, and Skála.- 26.  Similarity scaling of a free, round jet in air. Buchhave, Zhu and Velte.- 27. Topological Differences in Mean Wakes of Circular and Square Cantilevered Cylinders. Kindree, Yan and Martinuzzi.- 28.  Large-Scale-Motions and self-excited clustering of coherent structures in wall turbulence. Tardu.- 29.  The conservative pressure Hessian and the free fluid particle model. Carbone, Bragg, Tom, Wilczek and Iovieno.- 30. Modelling pressure Hessian in turbulence through tensor function representation theory. Carbone and Wilczek .- 31. Stretched Amplitude Decaying Fourier Modes in the Jet Far-Field. Hodžic, Meyer, George and Velte.- 32. Generalizable Theory of Reynolds Stress. Lee.- 33.  Spectral Energetics of a Quasilinear Approximation in Uniform Shear Turbulence. Hernández and Hwang .- 34.Turbulence & Uncertainty for Future Renewable Energy Reliability. Tavner and Zappalá.- 35. Instability on rotating sharp cones - revisited. Kato, Alfredsson and Lingwood.- 36. Rotational effects on layered structures in inhomogeneous stratified turbulence. Iida.- 37. Magnetoclinicity instability. Yokoi and Tobias.- 38. Beginning of Taylor's and wavy vortices at the loss of stability of a conducting liquid flow produced by the rotating magnetic field. Zibold.- 39. Investigation of the Flow Generated by the Surface Discharge on the Cylinder Body in the Quiescent Air. Ivchenko and Shakhov.- 40.Numerical and Physical Aspects of Large-Eddy Simulation of Turbulent Mixing in a Helium-Air Supersonic Co-flowing Jet. Troshin, Bakhne and Sabelnikov .- 41.Turbulent energy production in the boundary layer of a gas flow near the free surface of a liquid. Goltsman and Saushin .- 42. Phase distribution of the developed three-component pipe flows. Saushin and Goltsman.

最近チェックした商品