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Some novel ideas in turbulence studies. Practical aspect: Mixing and segregation in random flows....

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Some novel ideas in turbulence studies. Practical aspect: Mixing and segregation in random flows. Fundamental aspect: Strong fluctuations, symmetries and anomalies. Gregory Falkovich Imperial College, December 2005
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Page 1: Some novel ideas in turbulence studies. Practical aspect: Mixing and segregation in random flows. Fundamental aspect: Strong fluctuations, symmetries and.

Some novel ideas in turbulence studies.

Practical aspect: Mixing and segregation in random flows.

Fundamental aspect: Strong fluctuations, symmetries and anomalies.

Gregory Falkovich

Imperial College, December 2005

Page 2: Some novel ideas in turbulence studies. Practical aspect: Mixing and segregation in random flows. Fundamental aspect: Strong fluctuations, symmetries and.
Page 3: Some novel ideas in turbulence studies. Practical aspect: Mixing and segregation in random flows. Fundamental aspect: Strong fluctuations, symmetries and.
Page 4: Some novel ideas in turbulence studies. Practical aspect: Mixing and segregation in random flows. Fundamental aspect: Strong fluctuations, symmetries and.
Page 5: Some novel ideas in turbulence studies. Practical aspect: Mixing and segregation in random flows. Fundamental aspect: Strong fluctuations, symmetries and.
Page 6: Some novel ideas in turbulence studies. Practical aspect: Mixing and segregation in random flows. Fundamental aspect: Strong fluctuations, symmetries and.
Page 7: Some novel ideas in turbulence studies. Practical aspect: Mixing and segregation in random flows. Fundamental aspect: Strong fluctuations, symmetries and.
Page 8: Some novel ideas in turbulence studies. Practical aspect: Mixing and segregation in random flows. Fundamental aspect: Strong fluctuations, symmetries and.

~

Page 9: Some novel ideas in turbulence studies. Practical aspect: Mixing and segregation in random flows. Fundamental aspect: Strong fluctuations, symmetries and.

Passive scalar decay

Small spherical spot released in a smooth flow with

Page 10: Some novel ideas in turbulence studies. Practical aspect: Mixing and segregation in random flows. Fundamental aspect: Strong fluctuations, symmetries and.

entropy

→ singular (fractal) SRB Measure

Page 11: Some novel ideas in turbulence studies. Practical aspect: Mixing and segregation in random flows. Fundamental aspect: Strong fluctuations, symmetries and.

An anomalous scaling corresponds to slower divergence of particles to get more weight.Statistical integrals of motion (zero modes) of the backward-in-time evolution compensate the increase in the distances by the mass decrease inside the volume.

Coarse-grained density

Page 12: Some novel ideas in turbulence studies. Practical aspect: Mixing and segregation in random flows. Fundamental aspect: Strong fluctuations, symmetries and.

u

v

Inertial particles

Page 13: Some novel ideas in turbulence studies. Practical aspect: Mixing and segregation in random flows. Fundamental aspect: Strong fluctuations, symmetries and.
Page 14: Some novel ideas in turbulence studies. Practical aspect: Mixing and segregation in random flows. Fundamental aspect: Strong fluctuations, symmetries and.

Spatially smooth flow

Page 15: Some novel ideas in turbulence studies. Practical aspect: Mixing and segregation in random flows. Fundamental aspect: Strong fluctuations, symmetries and.

Equivalent in 1d to Anderson localization :localization length = Lyapunov exponent

One-dimensional model

Page 16: Some novel ideas in turbulence studies. Practical aspect: Mixing and segregation in random flows. Fundamental aspect: Strong fluctuations, symmetries and.

Super-symmetry broken

Lyapunov exponent

Page 17: Some novel ideas in turbulence studies. Practical aspect: Mixing and segregation in random flows. Fundamental aspect: Strong fluctuations, symmetries and.
Page 18: Some novel ideas in turbulence studies. Practical aspect: Mixing and segregation in random flows. Fundamental aspect: Strong fluctuations, symmetries and.
Page 19: Some novel ideas in turbulence studies. Practical aspect: Mixing and segregation in random flows. Fundamental aspect: Strong fluctuations, symmetries and.
Page 20: Some novel ideas in turbulence studies. Practical aspect: Mixing and segregation in random flows. Fundamental aspect: Strong fluctuations, symmetries and.
Page 21: Some novel ideas in turbulence studies. Practical aspect: Mixing and segregation in random flows. Fundamental aspect: Strong fluctuations, symmetries and.
Page 22: Some novel ideas in turbulence studies. Practical aspect: Mixing and segregation in random flows. Fundamental aspect: Strong fluctuations, symmetries and.
Page 23: Some novel ideas in turbulence studies. Practical aspect: Mixing and segregation in random flows. Fundamental aspect: Strong fluctuations, symmetries and.

Conclusion

All known cases of anomalies (symmetry remains

broken when symmetry breaking factor goes to zero)

can be traced to conserved quantities.

Anomalous scaling is due to statistical conservation laws.


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