Back to Search Start Over

Performance of different absorber materials and move-in/out strategies for the control rod in small rod-controlled pressurized water reactor: A study based on KLT-40 model

Authors :
Zhiqiang Wu
Jinsen Xie
Pengyu Chen
Yingjie Xiao
Zining Ni
Tao Liu
Nianbiao Deng
Aikou Sun
Tao Yu
Source :
Nuclear Engineering and Technology, Vol 56, Iss 7, Pp 2756-2766 (2024)
Publication Year :
2024
Publisher :
Elsevier, 2024.

Abstract

Small rod-controlled pressurized water reactors (PWR) are the ideal energy source for vessel propulsion, benefiting from their high reactivity control efficiency. Since the control rods (CRs) increase the complexity of reactivity control, this paper seeks to study the performance of CRs in small rod-controlled PWRs to extend the lifetime and reduce power offset due to CRs.This study investigates CR grouping, move-in/out strategies, and axially non-uniform design effects on core neutron physics metrics. These metrics include axial offset (AO), core lifetime (CL), fuel utilization (FU), and radial power peaking factor (R-PPF). To simulate the movement of the CRs, a ''Critical-CR-burnup'' function was developed in OpenMC. In CR designs, the CRs are grouped into three banks to study the simultaneous and prioritized move-in/out strategies. The results show CL extension from 590 effective full power days (EFPDs) to 638–698 EFPDs. A lower-worth prioritized strategy minimizes AO and the extremum values decrease from −0.69 and + 0.81 to −0.28 and + 0.51. Although an axially non-uniform CR design can improve AO at the beginning of cycle (BOC), considering the overall CR worth change is crucial, as a significant decrease can adversely impact axial power distribution during the middle of cycle (MOC).

Details

Language :
English
ISSN :
17385733
Volume :
56
Issue :
7
Database :
Directory of Open Access Journals
Journal :
Nuclear Engineering and Technology
Publication Type :
Academic Journal
Accession number :
edsdoj.bf8143d03b6d4eaaae5cd574aa05ace3
Document Type :
article
Full Text :
https://doi.org/10.1016/j.net.2024.02.037