Statistical Physics of Turbulence - Lecture 1

Statistical Physics of Turbulence - Lecture 1

International Centre for Theoretical Sciences via YouTube Direct link

Global energy budget

25 of 32

25 of 32

Global energy budget

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Statistical Physics of Turbulence - Lecture 1

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  1. 1 Statistical Physics of Turbulent Flow
  2. 2 Lecture 1: Content
  3. 3 I. Turbulent flows: where and why?
  4. 4 Natural and industrial flows
  5. 5 Turbulence
  6. 6 Fluid turbulence
  7. 7 Mechanism: boundary layers
  8. 8 Mechanism: natural convection
  9. 9 Mechanism: shear flow
  10. 10 Hand-waiving turbulence
  11. 11 II. View and tools
  12. 12 Views of mathematicians: Yes/
  13. 13 Views of engineers: How?
  14. 14 Views of physicists: Why?
  15. 15 Analytical tools
  16. 16 Experimental tools: Hot Wire
  17. 17 Experimental tools: PIV
  18. 18 Experimental tools: PTV
  19. 19 Numerical tools: CFD
  20. 20 Numerics: DNS
  21. 21 LaTu spectral solver
  22. 22 Toward virtual laboratories
  23. 23 III. Phenomenology of turbulent flow
  24. 24 Taylor hypothesis and Taylor -
  25. 25 Global energy budget
  26. 26 The dissipative anomaly
  27. 27 Development of fine structures
  28. 28 Richardson cascade
  29. 29 Multi-scale description
  30. 30 Cascade hypotheses
  31. 31 Kolmogorov self-similarity
  32. 32 Q&A

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