Reynolds stress: Difference between revisions

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In the context of fusion plasmas, the Reynolds stress is a mechanism for generation of sheared flow from turbulence.
In the context of fusion plasmas, the Reynolds stress is a mechanism for generation of sheared flow from turbulence.
<ref>[http://dx.doi.org/10.1088/0741-3335/43/10/308 S.B. Korsholm et al, ''Reynolds stress and shear flow generation'', Plasma Phys. Control. Fusion '''43''' (2001) 1377]</ref>


Starting from the incompressible momentum balance equation, neglecting the dissipative pressure tensor:
Starting from the incompressible momentum balance equation, neglecting the dissipative pressure tensor:

Revision as of 16:13, 12 July 2011

In the context of fusion plasmas, the Reynolds stress is a mechanism for generation of sheared flow from turbulence. [1]

Starting from the incompressible momentum balance equation, neglecting the dissipative pressure tensor: [2]

∂uy∂t+∇x(uxuy)=−∇yP+1ρ(j→×B→)y

Averaging over a magnetic surface (i.e., over y), the right-hand side cancels:

∂uy∂t+∇x(uxuy)=0

Now, writing the flow as the sum of a mean and a fluctuating part

u=u¯+u~

one obtains

∂u¯y∂t+∇x⟨u~xu~y⟩=0

Here, the Reynolds stress tensor appears:

Rxy=⟨u~xu~y⟩

and it is clear that a non-zero value of the gradient of the Reynolds stress (of fluctuating flow components) can drive a laminar flow.

See also

References

  1. ↑ S.B. Korsholm et al, Reynolds stress and shear flow generation, Plasma Phys. Control. Fusion 43 (2001) 1377
  2. ↑ R. Balescu, Aspects of Anomalous Transport in Plasmas, Institute of Physics Pub., Bristol and Philadelphia, 2005, ISBN 9780750310307