DOE OSTI · 1886303
Deterministic and Monte Carlo Nuclear Data Adjustment Methods [Slides]
Abstract
For the Bayesian Monte Carlo methodology, a need to understand convergence of the posterior moments as a function of the number of parameter realizations is required. In high-dimensional systems, it can be very costly to sample entire parameter space and perform functional evaluation for every realization. Bayesian Monte Carlo allows one to relax the GLLS approximations of model linearity and prior/posterior PDF shape. The Bayesian Stochastic Collocation Method is a deterministic approach to “sample” the parameter space. It allows one to relax the GLLS approximations of model linearity and posterior PDF shape. Higher-order posterior moments (i.e., skewness, kurtosis, etc.) can be studied through polynomial expansion. Tensor product quadrature scales poorly and can use sparse grid quadrature methods.
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Rising, Michael E., Riedel, Bobbi. 2022-06-30. Deterministic and Monte Carlo Nuclear Data Adjustment Methods [Slides]. https://doi.org/10.2172/1886303
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