Jucker, MartinGraves, JonathanCooper, Wilfred AnthonyBrunner, StephanMellet, NicolasJohnson, Thomas2010-06-202010-06-202010-06-202009https://infoscience.epfl.ch/handle/20.500.14299/50924For self-consistent ICRF heating simulations, four codes have been coupled: VMEC[1] provides a fully shaped, anisotropic 3D MHD equilibrium (bi- Maxwellian distribution function), transferred to Boozer coordinates by TERPSICHORE[2]. The full-wave code LEMan[3,4] provides the IC wave field, power deposition and wave numbers (new anisotropic dielectric tensor and upshifted k). Finally, VENUS[5,6] computes the evolution of the distribution function due to ICRF heating and Coulomb collisions on the background thermal plasma (using Monte Carlo operators for Coulomb collisions and ICRH).Self-consistent ICRF simulations in fully shaped anisotropic plasmastext::conference output::conference poster not in proceedings