Published 1996 | Version v1
Miscellaneous

Study on the sensitivity of Self-Powered Neutron Detectors (SPND) and its change due to burn-up

  • 1. Korea Advanced Inst. of Science and Technology, Taejon (Korea, Republic of). Nuclear Engineering Dept.

Description

Self-Powered Neutron Detectors (SPND) are currently used to estimate the power generation distribution and fuel burn-up in several nuclear power reactors in Korea. While they have several advantages such as small size, low cost, and relatively simple electronics required in conjunction with its usage, it has some intrinsic problems of the low level of output current, a slow response time, the rapid change of sensitivity which makes it difficult to use for a long term. In this paper, Monte Carlo simulation was accomplished to calculate the escape probability as a function of the birth position for the typical geometry of rhodium-based SPNDs. Using the simulation result, the burn-up profile of rhodium number density and the neutron sensitivity is calculated as a function of burn-up time in the reactor. The sensitivity of the SPND decreases non-linearly due to the high absorption cross-section and the non-uniform burn-up of rhodium in the emitter rod. The method used here can be applied to the analysis of other types of SPNDs and will be useful in the optimum design of new SPNDs for long-term usage. (author)

Part of:
Proceedings of the 2nd Japan-Korea seminar on advanced reactors

Additional details

Publishing Information

Imprint Title
Proceedings of the 2nd Japan-Korea seminar on advanced reactors
Imprint Pagination
299 p.
Journal Page Range
p. 183-187.
Report number
INIS-JP--072

Conference

Title
2. Japan-Korea seminar on advanced reactors.
Dates
15-17 Oct 1996.
Place
Tokyo (Japan).

Optional Information