A fusion DEMO will be designed as a long-term D-T reaction machine, and it will provide electricity to the grid. The core components of the fusion DEMO such as superconducting TF coils and vacuum vessel sectors become larger and heavier than those of ITER. The difficulties of manufacturing and handling increase significantly. Therefore, the conceptual design of the plasma vacuum vessel and its leg are carried out based on the consideration of assembly and disassembly processes of the core components. When the global density of the device is assumed to be same as the ITER, the total weight of the fusion DEMO would be about 77,500 tons and one TF coil weigh wound be about 1,200 tons. To carry out the easy works for assembling and disassemblin...
The design status of the vacuum vessel for the Fusion Ignition Research Experiment (FIRE) is present...
10siWithin the EUROfusion Power Plant Physics and Technology Department the DEMOnstrational fusion p...
The Joint Special Design Team for Fusion DEMO was organized in 2015 to enhance Japan’s DEMO design a...
ITER is in the integration phase and a fusion DEMO is being designed conceptually. The size of the D...
The realisation of a Demonstration Fusion Power Reactor (DEMO) is the remaining and crucial step tow...
Goals of Japan’s fusion demonstration (DEMO) reactor are to demonstrate (1) steady and stable electr...
In this work we present the latest progresses (September 2018) in the conceptual design of the main ...
This article describes the DEMO cryostat, the vacuum vessel, and the tokamak building as well as the...
The Eurofusion-DEMO design will complete the Pre Conceptual Design phase (PCD) with a PCD Gate, name...
This paper describes the activity addressed to the conceptual design of the first wall and the main ...
MAJOR DESIGN FEATURES OF THE CONCEPTUAL D-T TOKAMAK POWER REACTOR, UWMAK-II. The conceptual design o...
The design status of the vacuum vessel for the Fusion Ignition Research Experiment (FIRE) is present...
10siWithin the EUROfusion Power Plant Physics and Technology Department the DEMOnstrational fusion p...
The Joint Special Design Team for Fusion DEMO was organized in 2015 to enhance Japan’s DEMO design a...
ITER is in the integration phase and a fusion DEMO is being designed conceptually. The size of the D...
The realisation of a Demonstration Fusion Power Reactor (DEMO) is the remaining and crucial step tow...
Goals of Japan’s fusion demonstration (DEMO) reactor are to demonstrate (1) steady and stable electr...
In this work we present the latest progresses (September 2018) in the conceptual design of the main ...
This article describes the DEMO cryostat, the vacuum vessel, and the tokamak building as well as the...
The Eurofusion-DEMO design will complete the Pre Conceptual Design phase (PCD) with a PCD Gate, name...
This paper describes the activity addressed to the conceptual design of the first wall and the main ...
MAJOR DESIGN FEATURES OF THE CONCEPTUAL D-T TOKAMAK POWER REACTOR, UWMAK-II. The conceptual design o...
The design status of the vacuum vessel for the Fusion Ignition Research Experiment (FIRE) is present...
10siWithin the EUROfusion Power Plant Physics and Technology Department the DEMOnstrational fusion p...
The Joint Special Design Team for Fusion DEMO was organized in 2015 to enhance Japan’s DEMO design a...