The European roadmap to the realisation of fusion energy has identified a number of technological and scientific challenges towards the development of a DEMO reactor. Mission 2 'Heat-exhaust systems' includes the investigation of alternative divertor configurations such as the snowflake, X and super-X divertors as a reliable solution for the power exhaust problem. This paper, starting from the geometrical description of a conventional European DEMO scenario with an aspect ratio of 3.1 and a reference Single Null configuration, firstly illustrates the objectives, the figure of merits and the constraints considered in the design of alternative configurations. DEMO descriptions for Double Null, Snowflake, X-divertor and Super-X configurations ...
The standard Single Null (SN) divertor is currently expected to be installed in DEMO. However, a num...
For a recent Japanese (JA) DEMO reactor design (Rp: 8 m size), the exhausted power to the SOL (Psep)...
A double-null configuration is being considered for the EU-DEMO, due to its potential benefits for p...
The European roadmap to the realisation of fusion energy has identified a number of technological an...
One of the main challenges in the roadmap to the realization of fusion energy is to develop a heat a...
Plasma exhaust has been identified as a major challenge towards the realisation of magnetic confinem...
The divertor configuration defines the power exhaust capabilities of DEMO as one of the major key de...
A physics and engineering analysis of alternative divertor configurations is carried out by examinin...
This paper deals with the design of snowflake (SF) plasma configurations in tokamaks. The SF configu...
In a power plant scale fusion reactor, a huge amount of thermal power produced by the fusion reactio...
Abstract As a demonstration fusion power plant, EU DEMO has to prove the maturity of fusion techno...
The standard Single Null (SN) divertor is currently expected to be installed in DEMO. However, a num...
For a recent Japanese (JA) DEMO reactor design (Rp: 8 m size), the exhausted power to the SOL (Psep)...
A double-null configuration is being considered for the EU-DEMO, due to its potential benefits for p...
The European roadmap to the realisation of fusion energy has identified a number of technological an...
One of the main challenges in the roadmap to the realization of fusion energy is to develop a heat a...
Plasma exhaust has been identified as a major challenge towards the realisation of magnetic confinem...
The divertor configuration defines the power exhaust capabilities of DEMO as one of the major key de...
A physics and engineering analysis of alternative divertor configurations is carried out by examinin...
This paper deals with the design of snowflake (SF) plasma configurations in tokamaks. The SF configu...
In a power plant scale fusion reactor, a huge amount of thermal power produced by the fusion reactio...
Abstract As a demonstration fusion power plant, EU DEMO has to prove the maturity of fusion techno...
The standard Single Null (SN) divertor is currently expected to be installed in DEMO. However, a num...
For a recent Japanese (JA) DEMO reactor design (Rp: 8 m size), the exhausted power to the SOL (Psep)...
A double-null configuration is being considered for the EU-DEMO, due to its potential benefits for p...