Full cross section calculations of ion-temperature-gradient-driven turbulence with Landau closure are being carried out as part of the Numerical Tokamak Turbulence Project, one of the U.S. Department of Energy`s Phase II Grand Challenges. To include the full cross section of a magnetic fusion device like the tokamak requires more memory and CPU time than is available on the National Energy Research Scientific Computing Center`s (NERSC`s) shared-memory vector machines such as the CRAY C90 and J90. Calculations of cylindrical multi-helicity ion-temperature-gradient-driven turbulence were completed on NERSC`s 160-processor distributed-memory CRAY T3E parallel computer with 256 Mbytes of memory per processor. This augurs well for yet more memor...
Over the past decade new regimes of tokamak operation have been identified, whereby electrostatic an...
ABSTRACT Reliable predictive simulation capability addressing confinement properties in magnetically...
a national consortium of efforts to create predictive nu-merical simulations of fluid plasma turbule...
: Full cross section calculations of ion-temperature-gradient-driven turbulence with Landau closure...
The principal objective of the Computational Physics Group is to develop advanced numerical models f...
Much progress has been made in simulating tokamak turbulent transport using both gyro uid and gyroki...
Turbulence presents one of the most interesting lasting challenges of classical physics. The vast u...
A cross-comparison and verification of state-of-the-art European codes describing gradient-driven pl...
The Gyrokinetic Toroidal Code (GTC) is a global, three-dimensional particle-in-cell application deve...
The goal of the extreme scale plasma turbulence studies described in this paper is to expedite the d...
For more than a decade, the study of microturbulence, driven by ion temperature gradient (ITG) drift...
Fusion performance in tokamaks depends on the core and edge regions as well as on their nonlinear fe...
Over the past decade new regimes of tokamak operation have been identified, whereby electrostatic an...
Performance prediction for ITER is based upon the ubiquitous experimental observation that the plasm...
Reliable predictive simulation capability addressing confinement properties in magnetically confined...
Over the past decade new regimes of tokamak operation have been identified, whereby electrostatic an...
ABSTRACT Reliable predictive simulation capability addressing confinement properties in magnetically...
a national consortium of efforts to create predictive nu-merical simulations of fluid plasma turbule...
: Full cross section calculations of ion-temperature-gradient-driven turbulence with Landau closure...
The principal objective of the Computational Physics Group is to develop advanced numerical models f...
Much progress has been made in simulating tokamak turbulent transport using both gyro uid and gyroki...
Turbulence presents one of the most interesting lasting challenges of classical physics. The vast u...
A cross-comparison and verification of state-of-the-art European codes describing gradient-driven pl...
The Gyrokinetic Toroidal Code (GTC) is a global, three-dimensional particle-in-cell application deve...
The goal of the extreme scale plasma turbulence studies described in this paper is to expedite the d...
For more than a decade, the study of microturbulence, driven by ion temperature gradient (ITG) drift...
Fusion performance in tokamaks depends on the core and edge regions as well as on their nonlinear fe...
Over the past decade new regimes of tokamak operation have been identified, whereby electrostatic an...
Performance prediction for ITER is based upon the ubiquitous experimental observation that the plasm...
Reliable predictive simulation capability addressing confinement properties in magnetically confined...
Over the past decade new regimes of tokamak operation have been identified, whereby electrostatic an...
ABSTRACT Reliable predictive simulation capability addressing confinement properties in magnetically...
a national consortium of efforts to create predictive nu-merical simulations of fluid plasma turbule...