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Core integrated simulations for the Divertor Tokamak Test facility scenarios towards consistent core-pedestal-SOL modelling

Casiraghi, I (author)
Univ Milano Bicocca, Dipartimento Fis G Occhialini, Milan, Italy.;CNR, Ist Sci & Tecnol Plasmi, Milan, Italy.
Mantica, P. (author)
CNR, Ist Sci & Tecnol Plasmi, Milan, Italy.
Ambrosino, R. (author)
DTT SC arl, Frascati, Italy.;Univ Napoli Feder II, Naples, Italy.;Consorzio CREATE, Naples, Italy.
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Aucone, L. (author)
Univ Milano Bicocca, Dipartimento Fis G Occhialini, Milan, Italy.;CNR, Ist Sci & Tecnol Plasmi, Milan, Italy.
Baiocchi, B. (author)
CNR, Ist Sci & Tecnol Plasmi, Milan, Italy.
Balbinot, L. (author)
Univ Tuscia, Dipartimento Econ Ingn Soc & Impresa, Viterbo, Italy.
Barberis, T. (author)
Politecn Torino, DISAT, Turin, Italy.
Castaldo, A. (author)
ENEA CR Frascati, Frascati, Italy.
Cavedon, M. (author)
Univ Milano Bicocca, Dipartimento Fis G Occhialini, Milan, Italy.
Frassinetti, Lorenzo (author)
KTH,Fusionsplasmafysik
Innocente, P. (author)
UNIPD, Consorzio RFX, CNR, INFN,ENEA, Padua, Italy.;CNR, Ist Sci & Tecnol Plasmi, Padua, Italy.
Koechl, F. (author)
Culham Sci Ctr, CCFE, Abingdon, England.
Nowak, S. (author)
CNR, Ist Sci & Tecnol Plasmi, Milan, Italy.
Agostinetti, P. (author)
UNIPD, Consorzio RFX, CNR, INFN,ENEA, Padua, Italy.;CNR, Ist Sci & Tecnol Plasmi, Padua, Italy.
Ceccuzzi, S. (author)
DTT SC arl, Frascati, Italy.;ENEA CR Frascati, Frascati, Italy.
Figini, L. (author)
CNR, Ist Sci & Tecnol Plasmi, Milan, Italy.
Granucci, G. (author)
CNR, Ist Sci & Tecnol Plasmi, Milan, Italy.
Vincenzi, P. (author)
UNIPD, Consorzio RFX, CNR, INFN,ENEA, Padua, Italy.;CNR, Ist Sci & Tecnol Plasmi, Padua, Italy.
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Univ Milano Bicocca, Dipartimento Fis G Occhialini, Milan, Italy;CNR, Ist Sci & Tecnol Plasmi, Milan, Italy. CNR, Ist Sci & Tecnol Plasmi, Milan, Italy. (creator_code:org_t)
2023-02-10
2023
English.
In: Plasma Physics and Controlled Fusion. - : IOP Publishing. - 0741-3335 .- 1361-6587. ; 65:3, s. 035017-
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • Deuterium plasma discharges of the Divertor Tokamak Test facility (DTT) in different operational scenarios have been predicted by a comprehensive first-principle based integrated modelling activity using state-of-art quasi-linear transport models. The results of this work refer to the updated DTT configuration, which includes a device size optimisation (enlargement to R-0=2.19 a = 0.70 m) and upgrades in the heating systems. The focus of this paper is on the core modelling, but special attention was paid to the consistency with the scrape-off layer parameters required to achieve divertor plasma detachment. The compatibility of these physics-based predicted scenarios with the electromagnetic coil system capabilities was then verified. In addition, first estimates of DTT sawteeth and of DTT edge localised modes were achieved.

Subject headings

NATURVETENSKAP  -- Fysik -- Astronomi, astrofysik och kosmologi (hsv//swe)
NATURAL SCIENCES  -- Physical Sciences -- Astronomy, Astrophysics and Cosmology (hsv//eng)

Keyword

integrated modelling
Divertor Tokamak Test facility
DTT
turbulent transport
core-edge-SOL simulations

Publication and Content Type

ref (subject category)
art (subject category)

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