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Intrinsic rotation with gyrokinetic models

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arxiv 1203.4958 v1 pith:TQFJ2BDK submitted 2012-03-22 physics.plasm-ph

Intrinsic rotation with gyrokinetic models

classification physics.plasm-ph
keywords effectsgyrokineticmomentumlowestorderfluxformulationintrinsic
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The generation of intrinsic rotation by turbulence and neoclassical effects in tokamaks is considered. To obtain the complex dependences observed in experiments, it is necessary to have a model of the radial flux of momentum that redistributes the momentum within the tokamak in the absence of a preexisting velocity. When the lowest order gyrokinetic formulation is used, a symmetry of the model precludes this possibility, making small effects in the gyroradius over scale length expansion necessary. These effects that are usually small become important for momentum transport because the symmetry of the lowest order gyrokinetic formulation leads to the cancellation of the lowest order momentum flux. The accuracy to which the gyrokinetic equation needs to be obtained to retain all the physically relevant effects is discussed.

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