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Source term dispersion analysis and construction of the probabilistic dispersion map around the Peach Bottom Unit-2 plant using the ASTEC and JRODOS codes
Marine and atmospheric transport modeling supporting nuclear preparedness in Norway: Recent achievements and remaining challenges
Magne Simonsen, Erik Berge, Heiko Klein, Justin Brown, Magnus Ulimoen, Øyvind Saetra, Ali Hosseini and Ole Christian Lind Science of The Total Environment 961 178161 (2025) https://doi.org/10.1016/j.scitotenv.2024.178161
Improved Analysis of the Short-Term Station Blackout Accidents of the Peach Bottom Unit-2 Reactor with ASTEC Including Radiological Impact and Statistical Analysis with JRODOS
Onur Murat, Victor Sanchez-Espinoza, Fabrizio Gabrielli, Shisheng Wang, Robert Stieglitz and Cesar Queral Nuclear Engineering and Design 420 113012 (2024) https://doi.org/10.1016/j.nucengdes.2024.113012
COMPARATIVE ANALYSIS OF SOFTWARE TOOLS TO PREDICT THE RADIOECOLOGICAL CONSEQUENCES AFTER ROUTINE AND ACCIDENTAL EMMISIONS BY NPP FOR THE POPULATION
Analysis of the short Term-Station Blackout accident at the Peach Bottom Unit-2 reactor with ASTEC including the estimation of the radiological impact with JRODOS
KIT reactor safety research for LWRs: Research lines, numerical tools, and prospects
V.H. Sanchez-Espinoza, F. Gabrielli, U. Imke, K. Zhang, L. Mercatali, G. Huaccho, J. Duran, A. Campos, A. Stakhanova, O. Murat, A.K. Mercan, J. Etcheto, M. Steinbrück, J. Stuckert, S. Gabriel, S. Ottenburger, R. Stieglitz and W. Tromm Nuclear Engineering and Design 414 112573 (2023) https://doi.org/10.1016/j.nucengdes.2023.112573
Redesigning the FDMT Food Chain Transfer Model: Now Probabilistically Enabled and Fully Flexible
Mathematical Modeling and Simulation of Systems (MODS'2020)
Ivan Kovalets and Oleksandr Romanenko Advances in Intelligent Systems and Computing, Mathematical Modeling and Simulation of Systems (MODS'2020) 1265 3 (2021) https://doi.org/10.1007/978-3-030-58124-4_1
Impact of source term release characteristics of nuclear plant on the performance of EURDEP to identify radioactive plumes
Uncertainties confronting stakeholders and decision-makers in planning intervention in urban and agricultural scenarios in the transition phase of a radiological emergency
Ivan Kovalets, Spyros Andronopoulos, Radek Hofman, et al. Energy, Environment, and Sustainability, Pollutants from Energy Sources 149 (2019) https://doi.org/10.1007/978-981-13-3281-4_10
Risk bases can complement dose bases for implementing and optimising a radiological protection strategy in urgent and transition emergency phases
Linda Walsh, Alexander Ulanowski, Jan Christian Kaiser, Clemens Woda and Wolfgang Raskob Radiation and Environmental Biophysics 58(4) 539 (2019) https://doi.org/10.1007/s00411-019-00809-x
Assessment of off-site early countermeasures in the event of a LOCA in a research reactor
Spanish Experience on Modeling of Environmental Radioactive Contamination Due to Fukushima Daiichi NPP Accident Using JRODOS
Alla Dvorzhak, Carlos Puras, Milagros Montero and Juan C. Mora Environmental Science & Technology 46(21) 11887 (2012) https://doi.org/10.1021/es301687t
Importance of the demonstration/participation of end users for the success of the EURANOS project