Search Results - "Gliss, C."

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  1. 1

    Conceptual study of the remote maintenance of the DEMO breeding blanket by Bachmann, C., Gliss, C., Janeschitz, G., Steinbacher, T., Mozzillo, R.

    Published in Fusion engineering and design (01-04-2022)
    “…•Description of layout of active maintenance facility.•Prediction of BB transporter deformation.•Overview of the various integration issues. The development of…”
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    Journal Article
  2. 2

    DEMO design activity in Europe: Progress and updates by Federici, G., Bachmann, C., Barucca, L., Biel, W., Boccaccini, L., Brown, R., Bustreo, C., Ciattaglia, S., Cismondi, F., Coleman, M., Corato, V., Day, C., Diegele, E., Fischer, U., Franke, T., Gliss, C., Ibarra, A., Kembleton, R., Loving, A., Maviglia, F., Meszaros, B., Pintsuk, G., Taylor, N., Tran, M.Q., Vorpahl, C., Wenninger, R., You, J.H.

    Published in Fusion engineering and design (01-11-2018)
    “…This paper describes the progress of the DEMO Design Activities in Europe and particularly the work done to address critical design integration issues that…”
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    Journal Article
  3. 3

    Overview over DEMO design integration challenges and their impact on component design concepts by Bachmann, C., Ciattaglia, S., Cismondi, F., Eade, T., Federici, G., Fischer, U., Franke, T., Gliss, C., Hernandez, F., Keep, J., Loughlin, M., Maviglia, F., Moro, F., Morris, J., Pereslavtsev, P., Taylor, N., Vizvary, Z., Wenninger, R.

    Published in Fusion engineering and design (01-11-2018)
    “…•Description of selected architecture of the DEMO tokamak.•Description of shielding concept.•Rationale of the segmentation of the in-vessel…”
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    Journal Article
  4. 4

    Preliminary configuration of the torus vacuum pumping system installed in the DEMO lower port by Giegerich, T., Day, C., Gliss, C., Luo, X., Strobel, H., Wilde, A., Jimenez, S.

    Published in Fusion engineering and design (01-09-2019)
    “…In the European DEMO program, the design development of the demonstration power plant (DEMO) is currently in its pre-conceptual phase. This work includes also…”
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    Journal Article
  5. 5

    Containment structures and port configurations by Bachmann, C., Ciupinski, L., Gliss, C., Franke, T., Härtl, T., Marek, P., Maviglia, F., Mozzillo, R., Pielmeier, R., Schiller, T., Spaeh, P., Steinbacher, T., Stetka, M., Todd, T., Vorpahl, C.

    Published in Fusion engineering and design (01-01-2022)
    “…This article describes the DEMO cryostat, the vacuum vessel, and the tokamak building as well as the system configurations to integrate the main in-vessel…”
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  6. 6

    Integrated design of tokamak building concepts including ex-vessel maintenance by Gliss, C., Bachmann, C., Ciattaglia, S., Drumm, B., Gracia Camacho, M., Moscato, I., Mull, T., Palermo, I.

    Published in Fusion engineering and design (01-04-2022)
    “…The EU-DEMO (referred to as DEMO) tokamak complex currently consists of three buildings, like in ITER: the tokamak building, the tritium building and the…”
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    Journal Article
  7. 7

    Key design integration issues addressed in the EU DEMO pre-concept design phase by Bachmann, C., Ciattaglia, S., Cismondi, F., Federici, G., Franke, T., Gliss, C., Härtl, T., Keech, G., Kembleton, R., Maviglia, F., Siccinio, M.

    Published in Fusion engineering and design (01-07-2020)
    “…•Description of investigation into potential alternative plasma scenarios.•Description of wall protection strategy and integrated solutions.•Description of…”
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    Journal Article
  8. 8

    Mechanical support concept of the DEMO breeding blanket by Bachmann, C., Gliss, C., Härtl, T., Hernandez, F., Maione, I., Steinbacher, T., Vizvary, Z.

    Published in Fusion engineering and design (01-12-2021)
    “…•Description of blanket integration concept.•Stress calculation of breeding blanket segments.•Prediction of Breeding blanket deformation.•Identification of…”
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    Key EU DEMO plant and building layout criteria by Ciattaglia, S., Federici, G., Barucca, L., de Magistris, M., Gaio, E., Gliss, C., Koerber, M., Moscato, I., Porfiri, MT, Riedl, F., Tarallo, A.

    Published in Fusion engineering and design (01-10-2021)
    “…•An overview of plant and tokamak building layout criteria of DEMO reactor are outlined.•A first preliminary layout of DEMO main systems is draft.•The main…”
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  13. 13

    Integration of DEMO hazard piping into the tokamak building by Gliss, C., Bachmann, C., Ciattaglia, S., García, M., Federici, G., Koerber, M., Moscato, I., Riedl, F., Palermo, I., Utili, M.

    Published in Fusion engineering and design (01-07-2021)
    “…•An overview of the main design issues of DEMO Tokamak building is given.•The functions of the Tokamak building and the layout criteria are defined.•The lesson…”
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    Journal Article
  14. 14

    Design and feasibility of breeding blanket vertical segment-based architecture by Chauvin, D., Berry, T., Chuilon, B., Budden, S., Colling, B., Crofts, O., Federici, G., Flynn, E., Gliss, C., Ha, S., Jackson, C., Keech, G., Keep, J., Kembleton, R., Leong, W., Loving, A., Maisonnier, D., Mathew, G., Organ, E., Shaw, C., Spagnuolo, A, Waldon, C., Wilde, A.

    Published in Fusion engineering and design (01-12-2021)
    “…A design integration study (KDII4) was conducted in the DEMO Pre-Concept Design Phase with the primary goal to develop a pre-concept feasibility design and…”
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  15. 15

    Issues of the vertical blanket segment architecture in DEMO: Current progress and resolution strategies by Keech, G., Bachmann, C., Vorpahl, C., Gliss, C., Franke, T., Cismondi, F., Ciattaglia, S., Maviglia, F., Kembleton, R., Loving, A., Keep, J.

    Published in Fusion engineering and design (01-09-2019)
    “…Due to the limited irradiation lifetime of the structural material used for in-vessel components in DEMO, it will be necessary to replace all breeding blankets…”
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  16. 16

    Conceptual studies for the management of thermal properties of ITER bolometer cameras by Nádasi, G., Gliss, C., Meister, H., Pataki, Á., Penzel, F.

    Published in Fusion engineering and design (01-11-2017)
    “…As part of ITER's fusion diagnostic systems, miniaturised metal resistor type bolometer cameras are envisaged to provide the measurement of the total plasma…”
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  17. 17

    Current status of the design of the ITER bolometer diagnostic by Meister, H., Gliss, C., Hermann, D., Kannamüller, M., Koll, J., Nadasi, G., Pataki, A., Penzel, F., Sehmer, T., Tatar, L., Veres, G., Vezinet, D., Reichle, R., Ingesson, L.C., Walach, U.

    Published in Fusion engineering and design (01-07-2017)
    “…•550 bolometer LOS distributed in 71 cameras in ITER.•Derivation of design parameters for pinhole and collimator type cameras.•Optimisation procedure developed…”
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  18. 18

    Preparation of interfaces in ITER for integrating the Test Blanket Systems by Giancarli, L., Bede, O., Beloglazov, S., Benchikhoune, M., Chang, K.P., Chuyanov, V., Dell’Orco, G., Friconneau, J.P., Gicquel, S., Gliss, C., Hansalia, C., Iseli, M., Kim, C.S., Kuehn, I., Levesy, B., Maluta, F.T., Merola, M., Pascal, R., Patisson, L., Rigoni, G., Snipes, J., Tesini, A., Yonekawa, I.

    Published in Fusion engineering and design (01-12-2010)
    “…Up to six mock-ups of different tritium breeding blanket systems, referred to as Test Blanket Systems (TBS), will be tested in three equatorial ports of ITER…”
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    Journal Article Conference Proceeding
  19. 19

    Progress in the integration of Test Blanket Systems in ITER equatorial port cells and in the interfaces definition by Pascal, R., Beloglazov, S., Bonagiri, S., Commin, L., Cortes, P., Giancarli, L.M., Gliss, C., Iseli, M., Lanza, R., Levesy, B., Martins, J.-P., Nevière, J.-C., Patisson, L., Plutino, D., Shu, W., Swami, H.L.

    Published in Fusion engineering and design (01-08-2012)
    “…► The design integration of two test blanket systems in ITER port cell is addressed. ► Definition of interfaces of TBSs with building and other ITER systems is…”
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    Journal Article
  20. 20

    ITER lower port systems integration by Levesy, B., Baker, D., Boussier, B., Bryan, S., Cordier, J.J., Dremel, M., Dell’Orco, G., Daly, E., Doshi, B., Jeannoutot, T., Friconneau, J.P., Gliss, C., Le Barbier, R., Lachevre, F., Loughlin, M., Martin, A., Martins, J.P., Maruyama, S., Palmer, J., Reichle, R., Utin, Y.

    Published in Fusion engineering and design (01-10-2011)
    “…The lower port systems are installed inside the vacuum vessel lower ports and in the adjacent port cells. The vacuum vessel ports and penetrations are…”
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    Journal Article Conference Proceeding