Affiliation:
1. Xi’an Research Institute of Hi-Tech, Xi’an 710025, China
2. Northwest Institute of Nuclear Technology, Xi’an 710024, China
Abstract
The Xi’an Pulsed Reactor (XAPR) is characterized by its small core size and integrated fuel moderator structure, which results in a non-uniform core power and temperature distribution. Consequently, a complex coupling relationship exists between its core neutronics and thermal hydraulics, necessitating the assurance for the operational safety of the XAPR. To optimize the experimental scheme in the reactor, a refined three-dimensional steady-state nuclear-thermal coupling analysis is imperative. This study focuses on investigating the coupling calculation of a three-dimensional steady-state neutronics and thermal-hydraulics model for the XAPR by utilizing an open-source multi-physical coupling framework known as Cardinal. The neutron transport equation is effectively solved using OpenMC, while a three-dimensional heat conduction model is employed to compute the heat conduction of the fuel elements. Furthermore, a parallel multi-channel model is utilized to determine the fluid heat transfer. The research is centered on the XAPR, whereby Monte Carlo and thermal-hydraulics coupling calculations of the core under steady-state full-power conditions are conducted, specifically at an operational capacity of 2 MW. The results demonstrate a strong agreement between the simulation and experimental outcomes. The maximum temperature recorded for the thermometric fuel element in the XAPR is 795.1 K, with a deviation of approximately −5.7% from the measured value. Moreover, the outlet fluid temperature of the thermal channel is observed to be 360 K, exhibiting a deviation of around −2.7% from the measured value.
Funder
National Natural Science Foundation of China
Subject
Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous),Building and Construction
Reference23 articles.
1. Low-temperature alteration of uranium–thorium bearing minerals and its significance in neoformation of radioactive minerals in stream sediments of Wadi El-Reddah, North Eastern Desert, Egypt;Ebyan;Acta Geochim.,2020
2. Radiochemical technique as a tool for determination and characterisation of El Sela ore grade uranium deposits;Okasha;Int. J. Environ. Anal. Chem.,2023
3. Radioactivity and environmental impacts of ferruginous sandstone and its associating soil;Taha;Int. J. Environ. Anal. Chem.,2021
4. Chen, W., Jiang, X., Chen, L., Yuan, J., Zhang, L., Zhu, Y., and Zhang, X. (2018). Physical and Safety Analysis of the UZrH Pulse Reactor, Science Press.
5. Thermal neutron source design for nuclide parameter measurement with on-line prompt gamma ray method;Jiang;At. Energy Sci. Technol.,2019
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