142 results on '"Pestchanyi, S."'
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2. Influence of pellet shielding on disruption mitigation in ITER
3. Development of an advanced magnetic equilibrium model for fusion reactor system codes
4. TOKES simulations to compare gas and pellet injection for disruption mitigation in ITER
5. Validation of TOKES vapor shield simulations against experiments in the 2MK-200 facility
6. Physics conclusions in support of ITER W divertor monoblock shaping
7. TOKES studies of the thermal quench heat load reduction in mitigated ITER disruptions
8. Simulation of Be armour cracking under ITER-like transient heat loads
9. Simulation of W diaphragm efficiency for mitigation of RE beam in ITER
10. Optimization of MGI in JET using the TOKES code and mitigation of RE damage for the first wall
11. Erratum: Integrated design strategy for EU-DEMO first wall protection from plasma transients (Fusion Engineering and Design (2022) 177, (113067) (S0920379622000679), (10.1016/j.fusengdes.2022.113067))
12. Radiation loads on the ITER first wall during massive gas injection
13. Analysis of energy cross-transport during MGI: JET experiments and TOKES simulations
14. Simulation of tungsten plasma transport along magnetic field under ELM-like heat loads
15. Dust generation mechanisms under powerful plasma impacts to the tungsten surfaces in ITER ELM simulation experiments
16. Verification of TOKES simulations against the MGI experiments in JET
17. Erosion simulation of first wall beryllium armour after ITER transient heat loads and runaway electrons action
18. Experimental study of PFCs erosion and eroded material deposition under ITER-like transient loads at the plasma gun facility QSPA-T
19. Simulation of residual thermostress in tungsten after repetitive ELM-like heat loads
20. Simulation of tungsten armour cracking due to small ELMs in ITER
21. Experimental verification of FOREV-2D simulations for the plasma shield
22. Experimental study of PFCs erosion under ITER-like transient loads at plasma gun facility QSPA
23. Erosion simulation of first wall beryllium armour under ITER transient heat loads
24. Damage to preheated tungsten targets after multiple plasma impacts simulating ITER ELMs
25. Vapour shielding of liquid-metal CPS-based targets under ELM-like and disruption transient loading
26. Behaviour of melted tungsten plasma facing components under ITER-like transient heat loads: Simulations and experiments
27. ELM induced carbon contamination of ITER core
28. Effects of ELMs on ITER divertor armour materials
29. Improvement of the CFC structure to withstand high heat flux
30. Modelling of thermal shock experiments of carbon based materials in JUDITH
31. Estimation of carbon fibre composites as ITER divertor armour
32. The plasma shield in ITER plasma wall interactions
33. 3-D simulation of macroscopic erosion of CFC under ITER off-normal heat loads
34. Macroscopic erosion of divertor and first wall armour in future tokamaks
35. Macroscopic erosion in tokamak off normal events
36. Erosion of ITER-FEAT vertical targets during off-normal events
37. Vertical target and FW erosion during off-normal events and impurity production and transport during ELMs typical for ITER-FEAT
38. Plasma disruption management in ITER
39. Plasma shield dynamics and target erosion in disruption simulation experiments
40. Simulation of Heat Flux to the DEMO First Wall Due to Filamentary Transport in the Far SOL
41. Development of an advanced magnetic equilibrium and confinement model for fusion reactor systems codes
42. Simulation of turbulent plasma heat flux to the DEMO first wall
43. Improved Fusion Reactor Designs as per Integration of Advanced Physics and Technology Systems Code Modules
44. Simulations with current constraints of ELM-induced tungsten melt motion in ASDEX Upgrade
45. Modelling of Material Damage and High Energy Impacts on Tokamak PFCs during Transient Loads
46. ITER-ELM control requirements, ELM control schemes and required R&D
47. Modeling of brittle destruction of ITER armour under repetitive loads
48. Modelling of boundary plasma in TOKES
49. Divertor armour issues: lifetime, safety and influence on ITER performance
50. Simulation of ITER first wall radiation heat load during the disruption
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