Abstract
Thermal-motion behavior of the neutron is characterized by the neutron thermal-scattering cross sections. The thermal-scattering cross sections depend on the Thermal Scattering Laws (TSL) tabulated in terms of S(α,β), which is usually generated by the LEAPR module of NJOY code, using corresponding Phonon Density Of States (PDOS). The ZrHx is a good moderator because of its large fraction of H, hence it is widely used in the nuclear technology. However, the S(α,β) uncertainties of H in ZrHx has not been reported yet. Therefore, a general methodology is proposed in this paper to produce such a covariance matrix-associated to a semi-empirical phonon model. This is accomplished by fitting the computer-simulated scattering data against experimental data using the Unified Monte Carlo (UMC) method. Two TRIGA reactor benchmarks have been analyzed for keff uncertainty from TSL of H in ZrHx. It can be observed that after fitting, the keff error decreased with smaller uncertainty.
| Original language | English |
|---|---|
| Article number | 107920 |
| Journal | Annals of Nuclear Energy |
| Volume | 151 |
| DOIs | |
| State | Published - Feb 2021 |
Keywords
- TSLs covariance
- Thermal neutron scattering
- Unified Monte Carlo Method
- ZrHx
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