255 results on '"Federici, G."'
Search Results
2. Influence of a high magnetic field to the design of EU DEMO
3. Status and challenges for the concept design development of the EU DEMO Plant Electrical System
4. The EU DEMO staged design approach in the Pre-Concept Design Phase
5. The plan forward for EU DEMO
6. Design and feasibility of breeding blanket vertical segment-based architecture
7. Integrated design of breeding blanket and ancillary systems related to the use of helium or water as a coolant and impact on the overall plant design
8. Key EU DEMO plant and building layout criteria
9. Feasibility of D-D start-up under realistic technological assumptions for EU-DEMO
10. Pre-conceptual design of EU-DEMO divertor primary heat transfer systems
11. Integration of DEMO hazard piping into the tokamak building
12. Assessment of DEMO WCLL breeding blanket primary heat transfer system isolation valve absorbed doses due to activated water
13. Investigation of the DEMO WCLL Breeding Blanket Cooling Water Activation
14. Progress of the conceptual design of the European DEMO breeding blanket, tritium extraction and coolant purification systems
15. The EU DEMO Plant Electrical System: Issues and perspective
16. DEMO physics challenges beyond ITER
17. Key design integration issues addressed in the EU DEMO pre-concept design phase
18. European TBM programme: First elements of RoX and technical performance assessment for DEMO breeding blankets
19. Progress in the design development of EU DEMO helium-cooled pebble bed primary heat transfer system
20. Engineering and integration risks arising from advanced magnetic divertor configurations
21. EU DEMO safety and balance of plant design and operating requirements. Issues and possible solutions
22. Critical design issues in DEMO and solution strategies
23. An overview of the EU breeding blanket design strategy as an integral part of the DEMO design effort
24. Preliminary design of EU DEMO helium-cooled breeding blanket primary heat transfer system
25. Exploring a broad spectrum of design options for DEMO
26. Progress in EU Breeding Blanket design and integration
27. DEMO design activity in Europe: Progress and updates
28. Wall protection strategies for DEMO plasma transients
29. Overview over DEMO design integration challenges and their impact on component design concepts
30. Effect of engineering constraints on charged particle wall heat loads in DEMO
31. Initial definition of structural load conditions in DEMO
32. Uncertainties in power plant design point evaluations
33. Issues and strategies for DEMO in-vessel component integration
34. Limitations of transient power loads on DEMO and analysis of mitigation techniques
35. On the EU approach for DEMO architecture exploration and dealing with uncertainties
36. Recent technical progress on BA Program: DEMO activities and IFMIF/EVEDA
37. Overview of the design approach and prioritization of R&D activities towards an EU DEMO
38. Conceptual design studies for the European DEMO divertor: Rationale and first results
39. Model-based radiation scalings for the ITER-like divertors of JET and ASDEX Upgrade
40. Developing structural, high-heat flux and plasma facing materials for a near-term DEMO fusion power plant: The EU assessment
41. Experimental study of PFCs erosion and eroded material deposition under ITER-like transient loads at the plasma gun facility QSPA-T
42. Experimental validation of 3D simulations of tungsten melt erosion under ITER-like transient loads
43. Experimental study of PFCs erosion under ITER-like transient loads at plasma gun facility QSPA
44. 3D analysis of impurity transport and radiation for ITER limiter start-up configurations
45. Design progress of the vacuum vessel sectors and ports towards the ITER construction
46. ITER vacuum vessel, in-vessel components and plasma facing materials
47. Behaviour of melted tungsten plasma facing components under ITER-like transient heat loads: Simulations and experiments
48. Formation of deuterium–carbon inventories in gaps of plasma facing components
49. Edge localized modes control by resonant magnetic perturbations
50. Simulations of ITER start-up and assessment of limiter power loads
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