Gyrokinetic modeling is appropriate for describing Tokamak plasma turbulence, and the gyroaverage operator is a cornerstone of this approach. In a gyrokinetic code, the gyroaveraging scheme needs to be accurate enough to avoid spoiling the data but also requires a low computation cost because it is applied often on the main unknown, the 5D guiding-center distribution function, and on the 3D electric potentials. In the present paper, we improve a gyroaverage scheme based on Hermite interpolation used in the Gysela code. This initial implementation represents a too large fraction of the total execution time. The gyroaverage operator has been reformulated and is ...
In magnetically confined plasmas used in Tokamak, turbulence is respon-sible for specific transport ...
In magnetically confined plasmas used in Tokamak, turbulence is respon-sible for specific transport ...
International audienceIn magnetically confined plasmas used in Tokamak, turbulence is responsible fo...
International audienceGyrokinetic modeling is appropriate for describing Tokamak plasma turbulence, ...
International audienceGyrokinetic modeling is appropriate for describing Tokamak plasma turbulence, ...
Gyrokinetic modeling is appropriate for describing Tokamak plasma turbulence, and the gyro...
International audienceGyrokinetic modeling is appropriate for describing Tokamak plasma turbulence, ...
International audienceGyrokinetic modeling is appropriate for describing Tokamak plasma turbulence, ...
International audienceGyrokinetic modeling is appropriate for describing plasma turbulence in the co...
International audienceGyrokinetic modeling is appropriate for describing plasma turbulence in the co...
International audienceGyrokinetic modeling is appropriate for describing plasma turbulence in the co...
Gyrokinetic modeling is appropriate for describing plasma turbulence in the core of Tokamaks, and th...
Gyrokinetic modeling is appropriate for describing plasma turbulence in the core of Tokamaks, and th...
In magnetically confined plasmas used in Tokamak, turbulence is respon-sible for specific transport ...
In magnetically confined plasmas used in Tokamak, turbulence is respon-sible for specific transport ...
In magnetically confined plasmas used in Tokamak, turbulence is respon-sible for specific transport ...
In magnetically confined plasmas used in Tokamak, turbulence is respon-sible for specific transport ...
International audienceIn magnetically confined plasmas used in Tokamak, turbulence is responsible fo...
International audienceGyrokinetic modeling is appropriate for describing Tokamak plasma turbulence, ...
International audienceGyrokinetic modeling is appropriate for describing Tokamak plasma turbulence, ...
Gyrokinetic modeling is appropriate for describing Tokamak plasma turbulence, and the gyro...
International audienceGyrokinetic modeling is appropriate for describing Tokamak plasma turbulence, ...
International audienceGyrokinetic modeling is appropriate for describing Tokamak plasma turbulence, ...
International audienceGyrokinetic modeling is appropriate for describing plasma turbulence in the co...
International audienceGyrokinetic modeling is appropriate for describing plasma turbulence in the co...
International audienceGyrokinetic modeling is appropriate for describing plasma turbulence in the co...
Gyrokinetic modeling is appropriate for describing plasma turbulence in the core of Tokamaks, and th...
Gyrokinetic modeling is appropriate for describing plasma turbulence in the core of Tokamaks, and th...
In magnetically confined plasmas used in Tokamak, turbulence is respon-sible for specific transport ...
In magnetically confined plasmas used in Tokamak, turbulence is respon-sible for specific transport ...
In magnetically confined plasmas used in Tokamak, turbulence is respon-sible for specific transport ...
In magnetically confined plasmas used in Tokamak, turbulence is respon-sible for specific transport ...
International audienceIn magnetically confined plasmas used in Tokamak, turbulence is responsible fo...