DOE PAGES title logo U.S. Department of Energy
Office of Scientific and Technical Information

Title: Uncertainty Quantification of a Light Water Pulsed-Neutron Die-Away Experiment to Thermal Neutron Scattering Laws

Journal Article · · Nuclear Science and Engineering

Thermal neutron scattering laws are important nuclear data for many nuclear science and engineering applications. Validation helps to ensure that a thermal neutron scattering law has a high quality and often employs critical benchmarks as integral experiments. Recently, pulsed-neutron die-away benchmarks have been used as an experiment to validate thermal neutron scattering laws. Herein, we evidence how this alternative integral experiment has a high sensitivity to these nuclear data by performing an uncertainty quantification analysis. The analysis randomly sampled the nuclear model parameters associated with hydrogen bound in light water thermal neutron scattering law and sampled other nuclear data that influenced the experiment’s integral parameter (e.g., elastic scattering, absorption in hydrogen and oxygen) from their respective covariance matrices. The thermal neutron scattering law caused an uncertainty in the integral parameter that reached 2.67%, which exceeds by an order of magnitude the uncertainties induced in commonly used thermal solution critical benchmarks. The validation performed here, although limited due to a poor description of the historical experiment, indicated that the ENDF/B-VIII.0 thermal neutron scattering law well predicted the integral parameter. These results motivate further benchmark and validation efforts using pulsed-neutron die-away experiments.

Research Organization:
Lawrence Livermore National Laboratory (LLNL), Livermore, CA (United States)
Sponsoring Organization:
USDOE National Nuclear Security Administration (NNSA), Nuclear Criticality Safety Program (NCSP)
Grant/Contract Number:
AC52-07NA27344
OSTI ID:
1899313
Journal Information:
Nuclear Science and Engineering, Journal Name: Nuclear Science and Engineering Journal Issue: 1 Vol. 197; ISSN 0029-5639
Publisher:
Taylor & FrancisCopyright Statement
Country of Publication:
United States
Language:
English

References (17)

The diffusion parameters of thermal neutrons in water journal July 1956
CAB models for water: A new evaluation of the thermal neutron scattering laws for light and heavy water in ENDF-6 format journal March 2014
NUSS: A tool for propagating multigroup nuclear data covariances in pointwise ACE-formatted nuclear data using stochastic sampling method journal January 2015
Features of MCNP6 journal January 2016
Perturbation scheme for estimating uncertainties in thermal scattering cross sections of water journal November 2018
ENDF/B-VIII.0: The 8 th Major Release of the Nuclear Reaction Data Library with CIELO-project Cross Sections, New Standards and Thermal Scattering Data journal February 2018
Benchmarking a first-principles thermal neutron scattering law for water ice with a diffusion experiment journal January 2017
Validation of Thermal Scattering laws for Light Water at Elevated Temperatures with Diffusion Experiments journal January 2021
Impact of the thermal scattering law of H in H2O on the isothermal temperature reactivity coefficients for UOX and MOX fuel lattices in cold operating conditions journal January 2016
Data assimilation of post-irradiation examination data for fission yields from GEF journal January 2020
Impact of H in H2O thermal scattering data on criticality calculation: uncertainty and adjustment journal January 2022
Diffusion Parameters of Thermal Neutrons in Water journal December 1954
Random Adjustment of the H in H2O Neutron Thermal Scattering Data journal November 2012
Efficient Use of Monte Carlo: Uncertainty Propagation journal July 2014
A Pulsed-Neutron Investigation of the Effect of Temperature on the Decay of a Thermal-Neutron Population in H 2 O Ice journal December 1968
Pulsed-Neutron Diffusion Parameters in Spherical Water Systems journal January 1969
The NJOY Nuclear Data Processing System, Version 2016 report January 2017