Search Results - "Ivanova‐Stanik, I."

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  1. 1

    Mitigation of the divertor heat load in DEMO reactor by impurity seeding by Ivanova-Stanik, I., Zagórski, R.

    Published in Journal of nuclear materials (01-08-2015)
    “…This paper describes integrated numerical modeling applied to DEMO discharges with tungsten wall in slab geometry, rather than the full X-point geometry of the…”
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  2. 2

    Impurity behaviour in JET high-current baseline scenario for Deuterium, Tritium and Deuterium-Tritium plasmas by Wendler, N., Chomiczewska, A., Gromelski, W., Kowalska-Strzęciwilk, E., Telesca, G., IvanovaStanik, I., Garzotti, L., Van Eester, D., Zotta, V.K., Frigione, D., Rimini, F., Pucella, G.

    Published in Nuclear materials and energy (01-12-2024)
    “…•The understanding of the causes that led to uncontrolled increase of Prad in DT plasmas, was one of the crucial issues.•DT and T baseline plasmas exhibit…”
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  3. 3

    Multiple impurity seeding for power exhaust management in JT‐60SA with carbon divertor by Gałązka, K., IvanovaStanik, I., Stępniewski, W., Zagórski, R.

    Published in Contributions to plasma physics (1988) (01-07-2018)
    “…In this work the scenario #2 for the JT‐60SA with a carbon divertor configuration is analysed by using the core‐edge integrated COREDIV code. A combined…”
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  4. 4

    TECXY simulations of multi‐species impurity seeding in DEMO reactor by Chmielewski, P., Zagórski, R., IvanovaStanik, I., Pericolli, V.R.

    Published in Contributions to plasma physics (1988) (01-07-2018)
    “…Numerical studies have been performed to investigate the influence of the few impurity species on the heat load reduction and the SOL plasma parameters in the…”
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  5. 5

    Impurity Seeding in ASDEX Upgrade Tokamak Modeled by COREDIV Code by Gała̧zka, K., Ivanova-Stanik, I., Bernert, M., Czarnecka, A., Kallenbach, A., Zagörski, R., ASDEX Upgrade Team

    Published in Contributions to plasma physics (1988) (01-08-2016)
    “…The self‐consistent COREDIV code is used to simulate discharges in a tokamak plasma, especially the influence of impurities during nitrogen and argon seeding…”
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  6. 6

    Simulation of impurity behaviour in Experimental Advanced Superconducting Tokamak L‐mode discharges with the integrated COREDIV code by Xie, H., Zagórski, R., Ding, R., IvanovaStanik, I., Chen, J. L., Zang, Q., Duan, Y. M., Zhang, H. M., Lyu, B., Chen, Y. J., Feng, W.

    Published in Contributions to plasma physics (1988) (01-07-2018)
    “…The self‐consistent COREDIV code has been used to simulate the Experimental Advanced Superconducting Tokamak (EAST) L‐mode discharges of upper and lower single…”
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  7. 7

    Integrated Modelling of Nitrogen Seeded JET ILW Discharges for H-mode and Hybrid Scenarios by Ivanova-Stanik, I., Zagórski, R., Telesca, G., Czarnecka, A., Challis, C., Hobirk, J., JET EFDA contributors

    Published in Contributions to plasma physics (1988) (01-06-2014)
    “…In this paper numerical simulations with COREDIV code of JET discharges with ITER‐like wall are presented. We concentrate on the JET H‐mode and hybrid…”
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  8. 8

    Self-Consistent COREDIV Modelling of WEST Plasma Scenarios by Marandet, Y., Ivanova-Stanik, I., Zagörski, R., Bourdelle, C., Bucalossi, J., Bufferand, H., Ciraolo, G., Tsitrone, E.

    Published in Contributions to plasma physics (1988) (01-06-2014)
    “…The importance of core‐edge coupling in the WEST tokamak via tungsten production and core radiation is investigated with the COREDIV code. We first focus on…”
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  9. 9

    Core-SOL Modelling of Neon Seeded JET Discharges with the ITER-like Wall by Telesca, G., Ivanova-Stanik, I., Zagörski, R., Brezinsek, S., Czarnecka, A., Drewelow, P., Giroud, C., Huber, A., Wiesen, S., JET EFDA contributors

    Published in Contributions to plasma physics (1988) (01-08-2016)
    “…Five ELMy H‐mode Ne seeded JET pulses have been simulated with the self‐consistent core‐SOL model COREDIV. In this five pulse series only the Ne seeding rate…”
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  10. 10

    Modelling of JET DT experiments in ILW configurations by Zagórski, R., Czarnecka, A., IvanovaStanik, I., Challis, C.

    Published in Contributions to plasma physics (1988) (01-07-2018)
    “…Numerical scan at constant β shows that core and scrape‐off layer (SOL) radiations do not depend on the plasma current (Ip). Whereas the SOL radiation…”
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  11. 11

    Numerical Scaling with the COREDIV Code of JET Discharges with the ITER-Like Wall by Telesca, G., Ivanova-Stanik, I., Zagörski, R., Brezinsek, S., Giroud, C., Van Ooost, G., JET EFDA contributors

    Published in Contributions to plasma physics (1988) (01-06-2014)
    “…After the code parameters have been fixed by the numerical modeling of a well diagnosed JET pulse, the electron density and the input power have been changed,…”
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  12. 12

    Integrated Core-SOL Simulations of ITER H-Mode Scenarios with Different Pedestal Density by Ivanova-Stanik, I., Koechl, F., Voitsekhovitch, I., Telesca, G., Zagörski, R., EU-ITM ITER Scenario Modelling group

    Published in Contributions to plasma physics (1988) (01-06-2014)
    “…Fusion performance of ITER H‐mode plasmas in presence of intrinsic (He, Be and W) and seeded (Ne) im purities is investigated in self‐consistent…”
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  13. 13
  14. 14

    COREDIV simulations of D and D–T high current–high power Baseline pulses in JET-ITER like wall by Telesca, G., Field, A.R., Ivanova-Stanik, I., Brezinsek, S., Chomiczewska, A., Frigione, D., Garzotti, L., Kowalska-Strzeciwilk, E., Lomas, P., Mailloux, J., Pucella, G., Rimini, F., Van Eester, D., Zagórski, R.

    Published in Nuclear fusion (01-06-2024)
    “…Abstract The two best performing pulses of the so called ITER-Baseline scenario ( I p = 3.5 MA and P in ≈ 35 MW) of JET-ITER like wall, one in deuterium (D)…”
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  15. 15
  16. 16

    Integrated core-SOL-divertor modelling for DEMO with tin divertor by Poradziński, M., Ivanova-Stanik, I., Pełka, G., Zagórski, R.

    Published in Fusion engineering and design (01-11-2017)
    “…•The COREDIV code has been used to analyze DEMO with liquid tin divertor including model of evaporation and argon seeding.•In the absence of seeding there is…”
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  17. 17

    Influence of seeding and SOL transport on plasma parameters in JET ITER-like wall H-mode discharges by Zagórski, R., Ivanova-Stanik, I., Czarnecka, A., Telesca, G., Brezinsek, S.

    Published in Journal of nuclear materials (01-08-2015)
    “…This paper describes integrated numerical modeling applied to JET ITER-like wall H-mode discharges using the COREDIV code, which self-consistently solves 1D…”
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  18. 18

    Integrated power exhaust modelling for DEMO with lithium divertor by Poradziński, M., Ivanova-Stanik, I., Pełka, G., Ridolfini, V. Pericoli, Zagórski, R.

    Published in Fusion engineering and design (01-09-2019)
    “…•A CPS liquid lithium divertor modelling for DEMO.•Integrated core-SOL-divertor modelling. A DEMO reactor with a liquid lithium divertor setup is considered…”
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  19. 19

    Impact of plasma-wall interaction and exhaust on the EU-DEMO design by Maviglia, F., Siccinio, M., Bachmann, C., Biel, W., Cavedon, M., Fable, E., Federici, G., Firdaouss, M., Gerardin, J., Hauer, V., Ivanova-Stanik, I., Janky, F., Kembleton, R., Militello, F., Subba, F., Varoutis, S., Vorpahl, C.

    Published in Nuclear materials and energy (01-03-2021)
    “…•The EU-DEMO PFC protection strategy exhibits common features with ITER , but also some important differences.•EU-DEMO foresees the presence of limiters, to…”
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  20. 20

    Preliminary integrated core-SOL-divertor modelling for DTT tokamak with liquid metal divertor targets by Zagórski, R., Ivanova-Stanik, I., Pericoli Ridolfini, V., Poradziński, M., Crisanti, F.

    Published in Fusion engineering and design (01-09-2019)
    “…The I-DTT tokamak has been analyzed by means of the integrated COREDIV code simulations when either Li or Sn are used as liquid divertor target materials. It…”
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