Gyro-Landau fluid models for toroidal geometry

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Abstract

Gyro-Landau fluid model equations provide first-order time advancement for a limited number of moments of the gyrokinetic equation, while approximately preserving the effects of the gyroradius averaging and Landau damping. This paper extends the work of Hammett and Perkins [Phys. Rev. Lett. 64, 3019 (1990)] for electrostatic motion parallel to the magnetic field and ExB motion to include the gyroaveraging linearly and the curvature drift motion. The equations are tested by comparing the ion-temperature-gradient mode linear growth rates for the model equations with those of the exact gyrokinetic theory over a full range of parameters. © 1992 American Institute of Physics.

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Waltz, R. E., Dominguez, R. R., & Hammett, G. W. (1992). Gyro-Landau fluid models for toroidal geometry. Physics of Fluids B, 4(10), 3138–3151. https://doi.org/10.1063/1.860422

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