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Article Dans Une Revue EPJ N - Nuclear Sciences & Technologies Année : 2017

Adaptive multilevel splitting for Monte Carlo particle transport

Résumé

In the Monte Carlo simulation of particle transport, and especially for shielding applications, variance reduction techniques are widely used to help simulate realisations of rare events and reduce the relative errors on the estimated scores for a given computation time. Adaptive Multilevel Splitting (AMS) is one of these variance reduction techniques that has recently appeared in the literature. In the present paper, we propose an alternative version of the AMS algorithm, adapted for the first time to the field of particle transport. Within this context, it can be used to build an unbiased estimator of any quantity associated with particle tracks, such as flux, reaction rates or even non-Boltzmann tallies like pulse-height tallies and other spectra. Furthermore, the efficiency of the AMS algorithm is shown not to be very sensitive to variations of its input parameters, which makes it capable of significant variance reduction without requiring extended user effort.

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Chimie
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cea-01794118 , version 1 (02-10-2019)

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Henri Louvin, Eric Dumonteil, Tony Lelièvre, Mathias Rousset, Cheikh M. Diop. Adaptive multilevel splitting for Monte Carlo particle transport. EPJ N - Nuclear Sciences & Technologies, 2017, 3, pp.29. ⟨10.1051/epjn/2017022⟩. ⟨cea-01794118⟩
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