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Neural network based process coupling and parameter upscaling in reactive transport simulations
Prasianakis, N. I., Haller, R., Mahrous, M., Poonoosamy, J., Pfingsten, W., & Churakov, S. V. (2020). Neural network based process coupling and parameter upscaling in reactive transport simulations. Geochimica et Cosmochimica Acta, 291, 126-143. https://doi.org/10.1016/j.gca.2020.07.019
Analytical solutions to a coupled fluid dynamics and neutron transport problem with application to GeN-Foam verification
de Oliveira, R. G. G., & Mikityuk, K. (2018). Analytical solutions to a coupled fluid dynamics and neutron transport problem with application to GeN-Foam verification. Annals of Nuclear Energy, 121, 446-451. https://doi.org/10.1016/j.anucene.2018.07.036
Full core LOCA analysis for BWR/6 - methodology and first results
Cozzo, C., Epiney, A., Canepa, S., Ferroukhi, H., Zerkak, O., Khvostov, G., … Gorzel, A. (2016). Full core LOCA analysis for BWR/6 - methodology and first results. In Top Fuel 2016. LWR fuels with enhanced safety and performance (pp. 1135-1144). American Nuclear Society.
Serpent-OpenFOAM coupling in transient mode: simulation of a Godiva prompt critical burst
Aufiero, M., Fiorina, C., Laureau, A., Rubiolo, P., & Valtavirta, V. (2015). Serpent-OpenFOAM coupling in transient mode: simulation of a Godiva prompt critical burst. In Mathematics and computations, supercomputing in nuclear applications and Monte Carlo international conference (M&C+SNA+MC 2015). Mathematics and computations, supercomputing in nuclear applications and Monte Carlo international conference (M&C+SNA+MC 2015) (pp. 1995-2006). American Nuclear Society.