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Lee, Deokjung
Computational Reactor physics & Experiment Lab.
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Preliminary Performance Evaluation of On-the-Fly Doppler Broadening Capability for Monte Carlo Simulation in MCS

Author(s)
Khassenov, A.Choi, SLee, HZhang, PZheng, YLee, Deokjung
Issued Date
2015-10-18
URI
https://scholarworks.unist.ac.kr/handle/201301/39488
Citation
7th International Conference on Modelling and Simulation in Nuclear Science and Engineering (7ICMSNSE)
Abstract
This paper examines multipole representation of the cross section and its further Doppler broadening at the resolved resonance region. At the first step, a conversion is performed from nuclear data file resonance parameters to multipoles, which are corresponding poles and residues. The application of multipole representation allows generating the cross section at the target temperature, without pre-generation of 0K cross section libraries. In order to reduce the computational time for cross section generation, window energy concept was implemented and tested. On-the-fly Doppler broadening module based on multipole and windowed multipole representations were implemented into Monte Carlo code, and a pin cell problem was simulated. Simulation time and multiplication factors for different cases were compared with original Monte Carlo simulation results.
Publisher
7ICMSNSE

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