Goals of Japan’s fusion demonstration (DEMO) reactor are to demonstrate (1) steady and stable electric power generation in a power plant scale, (2) self-sufficient production of fuel (tritium), and (3) reasonable availability using a remote maintenance scheme anticipated in a commercial plant. Main design parameters of JA DEMO are a plasma major radius of 8.5 m, fusion output of 1.5-2 GW, magnetic field on the plasma axis of 5.94 T. The superconducting coil system of the reactor consists of a central solenoid (CS), 7 poloidal field (PF) coils and 16 toroidal field (TF) coils. Regarding CS and PF coils, superconducting coil technology on DEMO is basically the same as that on the world largest fusion experimental reactor called ITER. In contr...
The European DEMO, i.e. the demonstration fusion power plant designed in the framework of the Roadma...
The European DEMO, i.e. the demonstration fusion power plant designed in the framework of the Roadma...
The European DEMO, i.e. the demonstration fusion power plant designed in the framework of the Roadma...
The Joint Special Design Team for Fusion DEMO was organized in 2015 to enhance Japan’s DEMO design a...
Recent progress of Japan\u27s DEMO design is presented. The key concept is a steady-state DEMO with ...
Japan’s demonstration plant (JA DEMO) missions are defined as follows: (1) steady and stable power g...
The establishment of technology bases required for the development of a fusion demonstration reactor...
For a recent Japanese (JA) DEMO reactor design (Rp: 8 m size), the exhausted power to the SOL (Psep)...
The European DEMO, i.e. the demonstration fusion power plant designed in the framework of the Roadma...
A conceptual design has been developed for a moderate size (R = 6.0 m) high field (B = 13.1 T at the...
The European DEMO, i.e. the demonstration fusion power plant designed in the framework of the Roadma...
The European DEMO, i.e. the demonstration fusion power plant designed in the framework of the Roadma...
The European DEMO, i.e. the demonstration fusion power plant designed in the framework of the Roadma...
The European DEMO, i.e. the demonstration fusion power plant designed in the framework of the Roadma...
The European DEMO, i.e. the demonstration fusion power plant designed in the framework of the Roadma...
The European DEMO, i.e. the demonstration fusion power plant designed in the framework of the Roadma...
The European DEMO, i.e. the demonstration fusion power plant designed in the framework of the Roadma...
The European DEMO, i.e. the demonstration fusion power plant designed in the framework of the Roadma...
The Joint Special Design Team for Fusion DEMO was organized in 2015 to enhance Japan’s DEMO design a...
Recent progress of Japan\u27s DEMO design is presented. The key concept is a steady-state DEMO with ...
Japan’s demonstration plant (JA DEMO) missions are defined as follows: (1) steady and stable power g...
The establishment of technology bases required for the development of a fusion demonstration reactor...
For a recent Japanese (JA) DEMO reactor design (Rp: 8 m size), the exhausted power to the SOL (Psep)...
The European DEMO, i.e. the demonstration fusion power plant designed in the framework of the Roadma...
A conceptual design has been developed for a moderate size (R = 6.0 m) high field (B = 13.1 T at the...
The European DEMO, i.e. the demonstration fusion power plant designed in the framework of the Roadma...
The European DEMO, i.e. the demonstration fusion power plant designed in the framework of the Roadma...
The European DEMO, i.e. the demonstration fusion power plant designed in the framework of the Roadma...
The European DEMO, i.e. the demonstration fusion power plant designed in the framework of the Roadma...
The European DEMO, i.e. the demonstration fusion power plant designed in the framework of the Roadma...
The European DEMO, i.e. the demonstration fusion power plant designed in the framework of the Roadma...
The European DEMO, i.e. the demonstration fusion power plant designed in the framework of the Roadma...
The European DEMO, i.e. the demonstration fusion power plant designed in the framework of the Roadma...