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ASSOCIATION EURATOM HELLENIC REPUBLIC (and CYPRUS ) ( HELLAS)

FP8 Roadmap. RESEARCH INSTITUTES. UNIVERSITIES. ASSOCIATION EURATOM HELLENIC REPUBLIC (and CYPRUS ) ( HELLAS). NATIONAL CENTRE FOR SCIENTIFIC RESEARCH “DEMOKRITOS”. UNIVERSITY OF IOANNINA. ARISTOTLE UNIVERSITY OF THESSALONIKI. NATIONAL TECHNICAL UNIVERSITY OF ATHENS.

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ASSOCIATION EURATOM HELLENIC REPUBLIC (and CYPRUS ) ( HELLAS)

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  1. FP8 Roadmap RESEARCH INSTITUTES UNIVERSITIES ASSOCIATION EURATOMHELLENIC REPUBLIC (and CYPRUS)(HELLAS) NATIONAL CENTRE FOR SCIENTIFIC RESEARCH “DEMOKRITOS” UNIVERSITY OF IOANNINA ARISTOTLE UNIVERSITY OF THESSALONIKI NATIONAL TECHNICAL UNIVERSITY OF ATHENS FOUNDATION FOR RESEARCH AND TECHNOLOGY-HELLAS NATIONAL AND KAPODISTRIAN UNIVERSITY OF ATHENS UNIVERSITY OF CYPRUS TECHNICAL UNIVERSITY OF CRETE UNIVERSITY OF THESSALY

  2. FP8 Roadmap CHARACTER OF THE ACTIVITIES THEORY AND MODELING (2/3) CODE DEVELOPMENT AND TESTING (1/3) (*) EXPERIMENTAL CAPABILITIES

  3. FP8 Roadmap Objective 1 • Development of the European Gyrotron for ITER • 2.7, 2.0, 1.5 ppy (FP7+2, FP8, FP8+2) • F4E Grant • Collaborations: Gyrotron Test Bed at EPFL, Gyrotron Laboratory at KIT-Karlsruhe

  4. FP8 Roadmap Objectives 2 and 4 • Investigation of CD in the core of the toroidally confined plasma by utilizing of two EC waves with a frequency difference in the range of LH • 1, 2, 1 ppy (FP7+2, FP8, FP8+2) per objective • TG-H&CD (and EFDA-PPP&T) • Collaborations: KIT-Karlsruhe (possible collaboration), MIT-PSFC • Modules on EC/IC/LH propagation. Emphasis on NTMs • Asymptotic vs full-wave simulation of EM wave propagation in tokamak plasmas (HPC-FF) • Investigation of localized electron cyclotron current drive for NTM and ELM control • Modules on plasma control (HFA) • 4, 8, 4 ppy (FP7+2, FP8, FP8+2) per objective • TG-HCD, TG-DIA, TG-MHD (and EFDA-PPP&T) • Collaborations: IPP-Garching, FOM, PSFC-MIT • Kinetic formulation of RF induced current drive and heating (EC and LH relevant) at a low collisionality regime • 1, 2, 1 ppy (FP7+2, FP8, FP8+2) per objective • TG-HCD (and EFDA-PPP&T) • Collaborations: PSFC-MIT

  5. FP8 Roadmap Objective 2 and 4 • Scattering of radio frequency waves by edge density blobs and fluctuations • 1, 2, 1 ppy (FP7+2, FP8, FP8+2) per objective • TG-HCD, TG-TRA (and EFDA-PPP&T) • Collaborations: PSFC-MIT • Kinetic versus MHD and particle-based modeling of plasma transport at the • edge (ELMs and H-L transitions) in the presence of turbulence, non- • axysymmetric perturbations and RF waves. • 3, 6, 3 ppy (FP7+2, FP8, FP8+2) per objective • TG-MHD, TG-TRA (and EFDA-PPP&T) • Collaborations: PSFC-MIT • Extension of equilibrium codes to ITER and DEMO accessible plasma flows in • the framework of the Integrated- Tokamak-Modelling Task Force on the basis of • a generalized Grad-Shafranov equation. • Identification of flow and flow shear stabilizing effects in connection with the • resistive wall mode and neoclassical tearing mode for ITER and DEMO. • Impact of equilibrium magnetic field asymmetries on ITER and DEMO • confinement with plasma flow. • 3, 6, 3 ppy (FP7+2, FP8, FP8+2)per objective • ITM-MHD, TG-MHD (and EFDA-PPP&T)

  6. FP8 Roadmap Objective 2 and 4 • 3D MHD Pellet Modelling with collisions of alpha particles with pellets • 1, 2, 1 ppy (FP7+2, FP8, FP8+2) per objective • TG-MHD, TG-P-F (and EFDA-PPP&T) • On-line identification of the pumping systems of ITER and DEMO • 2, 4, 2 ppy (FP7+2, FP8, FP8+2) • TG-P-F (and EFDA-PPP&T) • High Hartmann number simulations for various TBM designs • 0.5, 1, 0.5 ppy (FP7+2, FP8, FP8+2) per objective • Prediction of structural steels behavior in fusion environment • Radiation damage effects in model FeCr alloys • Agglomeration & short range order in model FeCr alloys • Magnetic properties of model FeCr alloys • Nanostructured steels [Determination of structural & physical properties of new nanostructured (e.g. ODS) materials] • Protection and diffusion barrier coatings [Development of protection • coatings for plasma facing materials] • 1, 2, 1 ppy (FP7+2, FP8, FP8+2) per objective • TG-MAT (and EFDA-PPP&T)

  7. FP8 Roadmap Objective 3 Means: Fusion Physics and Technology Schools (10 consecutive) Adapted Curricula FUSENET membership

  8. FP8 Roadmap Objective 4 exclusively • Improvement of theoretical modelling and of existing numerical tools towards • the design and simulation of 4 MW coaxial gyrotrons. • 1.8, 2.5, 3.0 ppy (FP7+2, FP8, FP8+2) • EFDA-PPP&T • Collaborations: Gyrotron Laboratory at KIT-Karlsruhe, MIT-PSFC • Investigations on innovative concepts for gyrotron upgrading. • 1, 1, 1 ppy (FP7+2, FP8, FP8+2) • EFDA-PPP&T • Collaborations: Gyrotron Laboratory at KIT-Karlsruhe, MIT-PSFC • Ignition of fusion reactors by pellet injection • 1, 2, 1 ppy (FP7+2, FP8, FP8+2) • EFDA-PPP&T • Materials qualification and modeling for plasma facing walls • 2, 4, 2 ppy (FP7+2, FP8, FP8+2) • EFDA-PPP&T

  9. FP8 Roadmap Objective 4 exclusively • Neutralization of high kinetic energy negative ions (H and/or D) employing photo-attachement techniques for DEMO application • 1, 2, 1 ppy (FP7+2, FP8, FP8+2) • EFDA-PPP&T • Collaborations: EcolePolytechnique, Paris, CEA,Saclay, Paris, Bordeaux • An alternative pulsed and mono-energetic laser based neutron source • 1, 2, 1 ppy (FP7+2, FP8, FP8+2) • EFDA-PPP&T • Collaborations: Ecole Polytechnique, Paris, CEA,Saclay, Paris, Bordeaux

  10. FP8 Roadmap EFFORT TO BE INVESTED (ppy) (TENTATIVE)

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