This study closely investigates the plasma operation scenario for the LHD-type helical reactor FFHR-d1 in view of MHD equilibrium/stability, neoclassical transport, alpha energy loss and impurity effect. In 1D calculation code that reproduces the typical pellet discharges in LHD experiments, we identify a self-consistent solution of the plasma operation scenario which achieves steady-state sustainment of the burning plasma with a fusion gain of Q ~ 10 was found within the operation regime that has been already confirmed in LHD experiment. The developed calculation tool enables systematic analysis of the operation regime in real time
Achieving steady-state plasma operation at high plasma temperatures is one of the important goals of...
"The world fusion effort has embarked into a new age with the construction of ITER in Cadarache, Fra...
Establishment of a fueling method in hot and large plasmas is one of the important issues to realiz...
1D physics analysis of the plasma start-up scenario of the large helical device (LHD)-type helical r...
The LHD-type helical fusion reactor FFHR has been studied to realize steady-state fusion power gener...
Integrated physics analysis of plasma operation scenario of the compact helical reactor FFHR-c1 has ...
The plasma parameters of the standard LHD (Large Helical Device)-type helical reactor (LHR-S) are es...
The Fusion Engineering Research Project (FERP) at the National Institute for Fusion Science (NIFS) i...
Conceptual design activity for the LHD-type helical DEMO reactor FFHR-d1 has been conducted at the N...
One dimensional plasma model of the divertor leg in Large Helical Device is presented. The plasma is...
Possible gaps between the current large helical device (LHD) experiment and the reactor operation ha...
"New control method of the unstable operating point in the helical reactor FFHR makes the ignition s...
Large Helical Device (LHD) is one of the world largest superconducting fusion experiment devices, ha...
Conceptual design of a compact large helical device (LHD)-type helical fusion reactor FFHR-c1 has be...
The large helical device (LHD) is the world largest helical system having all superconducting coils....
Achieving steady-state plasma operation at high plasma temperatures is one of the important goals of...
"The world fusion effort has embarked into a new age with the construction of ITER in Cadarache, Fra...
Establishment of a fueling method in hot and large plasmas is one of the important issues to realiz...
1D physics analysis of the plasma start-up scenario of the large helical device (LHD)-type helical r...
The LHD-type helical fusion reactor FFHR has been studied to realize steady-state fusion power gener...
Integrated physics analysis of plasma operation scenario of the compact helical reactor FFHR-c1 has ...
The plasma parameters of the standard LHD (Large Helical Device)-type helical reactor (LHR-S) are es...
The Fusion Engineering Research Project (FERP) at the National Institute for Fusion Science (NIFS) i...
Conceptual design activity for the LHD-type helical DEMO reactor FFHR-d1 has been conducted at the N...
One dimensional plasma model of the divertor leg in Large Helical Device is presented. The plasma is...
Possible gaps between the current large helical device (LHD) experiment and the reactor operation ha...
"New control method of the unstable operating point in the helical reactor FFHR makes the ignition s...
Large Helical Device (LHD) is one of the world largest superconducting fusion experiment devices, ha...
Conceptual design of a compact large helical device (LHD)-type helical fusion reactor FFHR-c1 has be...
The large helical device (LHD) is the world largest helical system having all superconducting coils....
Achieving steady-state plasma operation at high plasma temperatures is one of the important goals of...
"The world fusion effort has embarked into a new age with the construction of ITER in Cadarache, Fra...
Establishment of a fueling method in hot and large plasmas is one of the important issues to realiz...