A numerical method for quantitatively analyzing the space charge effect of Self-Powered Neutron Detector

  • Yaodong Sang
  • , Bangjie Deng
  • , Qingmin Zhang
  • , Shiyu Liu
  • , Ruizhi Shao
  • , Zhuang Shao
  • , Liangzhi Cao
  • , Yunzhao Li

Research output: Contribution to journalArticlepeer-review

12 Scopus citations

Abstract

In this study, a numerical method that can quantitatively analyze the space charge effect of Self-Powered Neutron Detector (SPND) was proposed and successfully applied to SPNDSignal toolkit. By simulating the charge accumulation in SPND's insulator, the space charge distribution in the insulator under the specified radiation field and detector parameters were obtained. The obtained electric field can be imported into SPNDSignal to construct a real electric field in the insulator, which makes the numerical response calculation model for SPND more real. The feasibility of this method was demonstrated by a calculation for Ag SPND's space charge distribution and detector response. Moreover, the effect of this method on response calculation of SPND utilized in reactor core was verified by performing the space charge distribution calculation and response calculation for Rh SPND used in VVER assembly, and the results show a good agreement with reference data.

Original languageEnglish
Article number109308
JournalAnnals of Nuclear Energy
Volume177
DOIs
StatePublished - Nov 2022

Keywords

  • Numerical method
  • Self-Powered Neutron Detector
  • Space charge effect

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