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21 results on '"E. Militello-ASP"'

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1. Overview of T and D–T results in JET with ITER-like wall

2. Global scaling of the heat transport in fusion plasmas

3. Access and sustainment of ELMy H-mode operation for ITER pre-fusion power operation plasmas using JINTRAC

4. JINTRAC integrated simulations of ITER scenarios including fuelling and divertor power flux control for H, He and DT plasmas

5. Experimental validation of an integrated modelling approach to neutron emission studies at JET

6. H-mode plasmas in the pre-fusion power operation 1 phase of the ITER research plan

7. Evaluation of fuelling requirements for core density and divertor heat load control in non-stationary phases of the ITER DT 15 MA baseline scenario

8. Integrated core-SOL modelling of fuelling, density control and divertor heat loads for the flat-top phase of the ITER H-mode D-T plasma scenarios

9. Modelling one-third field operation in the ITER pre-fusion power operation phase

10. Overview of the JET results in support to ITER

11. Coupled core-SOL modelling of W contamination in H-mode JET plasmas with ITER-like wall

12. Modelling of plasma performance and transient density behaviour in the H-mode access for ITER gas fuelled scenarios

13. Development of ITER non-activation phase operation scenarios

14. EFD-C(13)03/38 Integrated Core+Edge+SOL+MHD Modelling of ELM Mitigation at JET

15. EFD-C(13)03/33 Status of Integrated Modelling of JET-ILW Plasmas with N2 Seeding

16. Modelling one-third field operation in the ITER pre-fusion power operation phase.

17. Integrated core-SOL modelling of fuelling, density control and divertor heat loads for the flat-top phase of the ITER H-mode D-T plasma scenarios.

18. First principle integrated modeling of multi-channel transport including Tungsten in JET.

19. Deep neural networks for plasma tomography with applications to JET and COMPASS

20. Development of ITER non-activation phase operation scenarios.

21. Simulations of the stationary Q = 10 and the exit phase from the flat-top of an ITER 15MA baseline scenario: predictive JINTRAC simulation with a consistent treatment of D and T in the whole plasma

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