A novel reduced model for ion temperature gradient (ITG) turbulent transport in helical plasmas is presented. The model enables one to predict nonlinear gyrokinetic simulation results from linear gyrokinetic analyses. It is shown from nonlinear gyrokinetic simulations of the ITG turbulence in helical plasmas that the transport coefficient can be expressed as a function of the turbulent fluctuation level and the averaged zonal flow amplitude. Then, the reduced model for the turbulent ion heat diffusivity is derived by representing the nonlinear turbulent fluctuations and zonal flow amplitude in terms of the linear growth rate of the ITG instability and the linear response of the zonal flow potentials. It is confirmed that the reduced transpo...
Results are presented from nonlinear gyrokinetic simulations of toroidal ion temperature gradient (I...
Using transport models, the impacts of trapped electrons on zonal flows and turbulence in helical fi...
A novel nonlinear functional relation of turbulence potential intensity, zonal flow potential intens...
Ion temperature gradient turbulent transport in the large helical device (LHD) is investigated by me...
Transport simulation for the electron and ion temperature profiles is performed in helical plasmas b...
Gyrokinetic theory and simulations on ion heat transport physics in helical systems have recently be...
Gyrokinetic theory and simulation results are presented to investigate regulation of ion temperature...
A high ion temperature plasma in the Large Helical Device is examined in the case in which the ion t...
In the framework of the flux-matching method, which is a useful way for the validation of the gyroki...
Gyrokinetic Vlasov simulations of the ion temperature gradient turbulence demonstrate reduction of t...
Turbulent transport in a high ion temperature discharge of the Large Helical Device (LHD) is investi...
Abstract. Gyrokinetic theory and simulations on ion heat transport physics in helical systems have r...
Gyrokinetic Vlasov simulations of the ion temperature gradient turbulence are performed in order to ...
The turbulent transport of magnetic confinement plasmas including multi-ion-particle-species in heli...
A novel scheme to predict the turbulent transport of ion heat of magnetic confined plasmas is develo...
Results are presented from nonlinear gyrokinetic simulations of toroidal ion temperature gradient (I...
Using transport models, the impacts of trapped electrons on zonal flows and turbulence in helical fi...
A novel nonlinear functional relation of turbulence potential intensity, zonal flow potential intens...
Ion temperature gradient turbulent transport in the large helical device (LHD) is investigated by me...
Transport simulation for the electron and ion temperature profiles is performed in helical plasmas b...
Gyrokinetic theory and simulations on ion heat transport physics in helical systems have recently be...
Gyrokinetic theory and simulation results are presented to investigate regulation of ion temperature...
A high ion temperature plasma in the Large Helical Device is examined in the case in which the ion t...
In the framework of the flux-matching method, which is a useful way for the validation of the gyroki...
Gyrokinetic Vlasov simulations of the ion temperature gradient turbulence demonstrate reduction of t...
Turbulent transport in a high ion temperature discharge of the Large Helical Device (LHD) is investi...
Abstract. Gyrokinetic theory and simulations on ion heat transport physics in helical systems have r...
Gyrokinetic Vlasov simulations of the ion temperature gradient turbulence are performed in order to ...
The turbulent transport of magnetic confinement plasmas including multi-ion-particle-species in heli...
A novel scheme to predict the turbulent transport of ion heat of magnetic confined plasmas is develo...
Results are presented from nonlinear gyrokinetic simulations of toroidal ion temperature gradient (I...
Using transport models, the impacts of trapped electrons on zonal flows and turbulence in helical fi...
A novel nonlinear functional relation of turbulence potential intensity, zonal flow potential intens...