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50 results on '"ITER-Like Wall"'

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1. Deuterium and beryllium depth profiles into the W-coated JET divertor tiles after ITER-like wall campaigns

2. Tritium retention in plasma facing materials of JET ITER-Like-Wall retrieved from the vacuum vessel in 2012 (ILW1), 2014 (ILW2) and 2016 (ILW3)

3. Retention of noble and rare isotope gases in plasma-facing components-Experience from the JET tokamak with the ITER-like wall

4. Analysis of the outer divertor hot spot activity in the protection video camera recordings at JET.

5. Dust generation in tokamaks: Overview of beryllium and tungsten dust characterisation in JET with the ITER-like wall.

6. The emissivity of W coatings deposited on carbon materials for fusion applications.

7. Studies of Be migration in the JET tokamak using AMS with 10Be marker.

8. The structure of the tungsten coatings deposited by Combined Magnetron Sputtering and Ion Implantation for nuclear fusion applications.

9. Comparison of ICRF and NBI Heated Plasmas Performances in the JET ITER-Like Wall.

10. Effect of the minority concentration on ion cyclotron resonance heating in presence of the ITER-like wall in JET.

11. Tritium retention in plasma facing materials of JET ITER-Like-Wall retrieved from the vacuum vessel in 2012 (ILW1), 2014 (ILW2) and 2016 (ILW3)

12. Invited Review

13. Isotope Identity Experiments in JET with ITER-like Wall

14. Tritium distribution analysis of Be limiter tiles from JET-ITER like wall campaigns using imaging plate technique and β-ray induced X-ray spectrometry

15. The JET real-time plasma-wall load monitoring system.

16. Plasma position and current control system enhancements for the JET ITER-like wall.

17. Power handling of the bulk tungsten divertor row at JET: First measurements and comparison to the GTM thermal model.

18. The impact of thermal fatigue and carbidization on the W coatings deposited on CFC tiles for the ITER-like Wall project at JET.

19. A wide angle view imaging diagnostic with all reflective, in-vessel optics at JET.

20. Results of the JET real-time disruption predictor in the ITER-like wall campaigns.

21. Development of W coatings for fusion applications

22. The role of JET for the preparation of the ITER exploitation

23. A bulk tungsten divertor row for the outer strike point in JET

24. Conceptual design for a bulk tungsten divertor tile in JET

25. Detailed electromagnetic analysis for design optimization of a tungsten divertor plate for JET

26. The JET programme in support of ITER

27. An analytical expression for ion velocities at the wall including the sheath electric field and surface biasing for erosion modeling at JET ILW

28. Comparison of the structure of the plasma-facing surface and tritium accumulation in beryllium tiles from JET ILW campaigns 2011-2012 and 2013-2014

31. Impact of the JET ITER-like wall on H-mode plasma fueling

32. Impact of the JET ITER-like wall on H-mode plasma fueling

33. Studies of dust from JET with the ITER-Like Wall: Composition and internal structure

34. Fuel inventory and deposition in castellated structures in JET-ILW

35. Structure, tritium depth profile and desorption from 'plasma-facing' beryllium materials of ITER-Like-Wall at JET

38. Comparison of H-mode plasmas in JET-ILW and JET-C with and without nitrogen seeding

39. The properties of the tungsten coating on fine grain graphite using pulsed laser deposition.

40. Runaway beam studies during disruptions at JET-ILW

41. Overview of the JET results

42. The JET real-time plasma-wall load monitoring system

44. Impact of minority concentration on fundamental (H)D ICRF heating performance in JET-ILW

45. An overview of the comprehensive First Mirror Test in JET with ITER-like wall

46. Pedestal and ELM response to impurity seeding in JET advanced scenario plasmas

47. Plasma wall interaction and its implication in an all tungsten divertor tokamak

48. Disruption Prediction on JET during the ILW Experimental Campaigns

49. An improved model for the accurate calculation of parallel heat fluxes at the JET bulk tungsten outer divertor

50. Investigation on the erosion/deposition processes in the ITER-like wall divertor at JET using glow discharge optical emission spectrometry technique

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