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Current status of MELCOR 2.2 for fusion safety analyses
Mascari, F., Bersano, A., Adorni, M., D'Ovidio, G., Martín-Fuertes, F., Jin, X. Z., … Malicki, M. (2023). Current status of MELCOR 2.2 for fusion safety analyses. Fusion Engineering and Design, 194, 113869 (7 pp.). https://doi.org/10.1016/j.fusengdes.2023.113869
Neutronics analysis of thorium-uranium based molten salt blanket in stellarator-type FFHR
Li, J. Y., Gu, L., Xu, H. S., Zhang, Y. P., Dai, Y., Yao, C. F., … Jiang, W. (2021). Neutronics analysis of thorium-uranium based molten salt blanket in stellarator-type FFHR. Fusion Engineering and Design, 162, 112098 (8 pp.). https://doi.org/10.1016/j.fusengdes.2020.112098
FreeCAD based Monte Carlo modeling approach for fusion reactor facilities
Li, J. Y., Gu, L., Xu, H. S., Dai, Y., Zhang, Y. P., Yu, R., … Jiang, W. (2020). FreeCAD based Monte Carlo modeling approach for fusion reactor facilities. Fusion Engineering and Design, 155, 111711 (10 pp.). https://doi.org/10.1016/j.fusengdes.2020.111711
The role of nuclear data for fusion nuclear technology
Fischer, U., Angelone, M., Avrigeanu, M., Avrigeanu, V., Bachmann, C., Dzysiuk, N., … Simakov, S. (2018). The role of nuclear data for fusion nuclear technology. Fusion Engineering and Design, 136, 162-167. https://doi.org/10.1016/j.fusengdes.2018.01.036
Modelling irradiation effects in fusion materials
Victoria, M., Dudarev, S., Boutard, J. L., Diegele, E., Lässer, R., Almazouzi, A., … Willaime, F. (2007). Modelling irradiation effects in fusion materials. Fusion Engineering and Design, 82(15-24), 2413-2421. https://doi.org/10.1016/j.fusengdes.2007.05.079
DC behaviour of NbTi cable-in-conduit conductors for ITER-FEAT
Wesche, R., Stepanov, B., Vogel, M., Gloor, T., & Bruzzone, P. (2003). DC behaviour of NbTi cable-in-conduit conductors for ITER-FEAT. Fusion Engineering and Design, 66-68, 1091-1095. https://doi.org/10.1016/S0920-3796(03)00229-1