Self-healing liquid Metal Divertors (LMDs) are currently being considered among the alternative strategies to address the power exhaust problem in future fusion reactors such as the EU DEMO tokamak. To characterize the power exhaust scenario for a tokamak equipped with an LMD, a self-consistent approach is required, accounting for the mutual interactions between the Scrape-Off Layer (SOL) plasma, the divertor targets and the evaporated metal. To this aim, the SOLPS-ITER code, a 2D multi-fluid solver for the plasma and neutral species, was coupled to a purposely developed LM target erosion/evaporation model and then applied to simulate the EU DEMO plasma in the presence of a liquid Sn divertor. Calculations considering only D and Sn as pl...
Abstract As a demonstration fusion power plant, EU DEMO has to prove the maturity of fusion techno...
Solutions for the steady-state power exhaust problem in future fusion reactors (e.g. DEMO) are not a...
In the present work, the role of plasma facing components protection in driving the EU-DEMO design w...
In this work, we study the effect of installing a liquid metal divertor (LMD) using a capillary-poro...
AbstractPower exhaust is a key mission in the roadmap to the realization of a future fusion reactor....
In the present work a model for a liquid metal (LM) box-type divertor is presented, aimed at includi...
Abstract For DEMO and beyond liquid metal plasma facing components are considered due to their resil...
Considering that solutions for the steady-state power exhaust problem in future fusion reactors (e.g...
Exhaust of power and particles is crucial for the DEMO device and the EU has developed a strategy to...
The behaviour of the scrape-off plasma of the European tokamak DEMO (DEMOnstration tokamak of the ec...
Providing an efficacious plasma facing surface between the extreme plasma heat exhaust and the struc...
Sn filled capillary porous structures were exposed to high flux low temperature plasma conditions at...
For DEMO and beyond, liquid metal plasma-facing components are considered due to their resilience to...
The standard Single Null (SN) divertor is currently expected to be installed in DEMO. However, a num...
Thermonuclear fusion is a promising concept for safe, sustainable, environmental friendly and expand...
Abstract As a demonstration fusion power plant, EU DEMO has to prove the maturity of fusion techno...
Solutions for the steady-state power exhaust problem in future fusion reactors (e.g. DEMO) are not a...
In the present work, the role of plasma facing components protection in driving the EU-DEMO design w...
In this work, we study the effect of installing a liquid metal divertor (LMD) using a capillary-poro...
AbstractPower exhaust is a key mission in the roadmap to the realization of a future fusion reactor....
In the present work a model for a liquid metal (LM) box-type divertor is presented, aimed at includi...
Abstract For DEMO and beyond liquid metal plasma facing components are considered due to their resil...
Considering that solutions for the steady-state power exhaust problem in future fusion reactors (e.g...
Exhaust of power and particles is crucial for the DEMO device and the EU has developed a strategy to...
The behaviour of the scrape-off plasma of the European tokamak DEMO (DEMOnstration tokamak of the ec...
Providing an efficacious plasma facing surface between the extreme plasma heat exhaust and the struc...
Sn filled capillary porous structures were exposed to high flux low temperature plasma conditions at...
For DEMO and beyond, liquid metal plasma-facing components are considered due to their resilience to...
The standard Single Null (SN) divertor is currently expected to be installed in DEMO. However, a num...
Thermonuclear fusion is a promising concept for safe, sustainable, environmental friendly and expand...
Abstract As a demonstration fusion power plant, EU DEMO has to prove the maturity of fusion techno...
Solutions for the steady-state power exhaust problem in future fusion reactors (e.g. DEMO) are not a...
In the present work, the role of plasma facing components protection in driving the EU-DEMO design w...