Title :
GYRO: A 5-D Gyrokinetic-Maxwell Solver
Author :
Fahey, Mark R. ; Candy, Jeff
Author_Institution :
Oak Ridge National Laboratory
Abstract :
GYRO solves the 5-dimensional gyrokinetic-Maxwell equations in shaped plasma geometry, using either a local (fluxtube) or global radial domain. It has been ported to a variety of modern MPP platforms including a number of commodity clusters, IBM SPs and the Cray X1. We have been able to quickly design and analyze new physics scenarios in record time using the Cray X1: (i) transport barrier studies (Phys. Plasmas 11 (2004) 1879), (ii) the local limit of global simulations (Phys. Plasmas 11 (2004) L25), (iii) kinetic electron and finite-beta generalizations of a community-wide benchmark case, and (iv) impurity transport with application to fuel separation in burning D-T plasmas (to be submitted to Nuclear Fusion). We report on recent physics progress and studies. Further, we discuss GYRO performance across several architectures.
Keywords :
Eulerian; GYRO; Performance; Theory; gyrokinetic; parallel performance; turbulence; Electrons; Equations; Fuels; Geometry; Impurities; Kinetic theory; Physics; Plasma applications; Plasma simulation; Plasma transport processes;
Conference_Titel :
Supercomputing, 2004. Proceedings of the ACM/IEEE SC2004 Conference
Print_ISBN :
0-7695-2153-3