Pin-by-Pin Coupled Transient Monte Carlo Analysis Using the iMC Code

Author:

Kim HyeonTae,Kim Yonghee

Abstract

In this article, we present a coupled multi-physics Monte Carlo reactor transient analysis framework implemented in the KAIST Monte Carlo iMC code. In the multi-physics framework, the time-dependent neutron transport calculation and the transient heat transfer analysis are done based on the predictor–corrector quasi-static Monte Carlo method and the three-dimensional finite element method, respectively. Using this high-fidelity analysis framework, we demonstrated the negative temperature feedback effect in two pressurized water reactor (PWR) transient scenarios. First, a 3-D burnable absorber-loaded fuel assembly was considered with all reflective boundary conditions. In this simple problem, a positive reactivity-induced transient was analyzed to characterize the reactor responses in view of the pin-wise power and temperature distribution. Second, the iMC multi-physics analysis is applied to a control rod withdrawal transient in the TMI-1 mini core problem, and detailed time-dependent results were provided and compared with the Serpent/SUBCHANFLOW analysis. In both cases, independent MC runs were performed to quantify the uncertainty of the multi-physics MC transient analysis.

Funder

National Research Foundation of Korea

Publisher

Frontiers Media SA

Subject

Economics and Econometrics,Energy Engineering and Power Technology,Fuel Technology,Renewable Energy, Sustainability and the Environment

Reference21 articles.

1. A Multi-Physics Adaptive Time Step Coupling Algorithm for Light-Water Reactor Core Transient and Accident Simulation;Cherezov;Energies,2020

2. Multi-physics Transient Simulations with TRIPOLI-4;Faucher;EPJ Web of Conferences,2021

3. Serpent and TRIPOLI-4® Transient Calculations Comparisons for Several Reactivity Insertion Scenarios in a 3D PWR Minicore Benchmark;Ferraro,2019

4. Serpent/SUBCHANFLOW Pin-By-Pin Coupled Transient Calculations for a PWR Minicore;Ferraro;Ann. Nucl. Energ.,2020

5. Serpent/SUBCHANFLOW Pin-By-Pin Coupled Transient Calculations for the SPERT-IIIE Hot Full Power Tests;Ferraro;Ann. Nucl. Energ.,2020

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