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2026 Nuclear Energy Conference & Expo (NECX)
August 24–27, 2026
Dallas, TX|Hilton Anatole
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UW-Madison: A Midwestern nucleus of fission and fusion
With more than six decades as a top-ranked program in its rearview, the Department of Nuclear Engineering and Engineering Physics (NEEP) at the University of Wisconsin–Madison is hardly slowing down. In fact, NEEP is continuing to grow and develop its faculty, curriculum, and research.
J. C. Zamora, G. Bollen, T. Ginter, R. Pal Chowdhury
Nuclear Technology | Volume 212 | Number 9 | September 2026 | Pages 2431-2438
Research Article | doi.org/10.1080/00295450.2025.2521881
Articles are hosted by Taylor and Francis Online.
Uncertainty quantification from radiation transport calculations was conducted using a Bayesian inference approach. A surrogate model, using a convolutional neural network, was employed to emulate the neutron fluence, which was simulated with a Monte Carlo radiation transport model. This allowed for a computationally cheap approach to evaluate input parameters and to sample their corresponding posterior probability distributions. Experimental data from the literature were employed to perform uncertainty quantification studies for concrete shields. The method is a nonintrusive approach that enables studies with multiple input parameters and can be applied to any radiation transport model.