Published 2001 | Version v1
Miscellaneous Open

A numerical study on transient high speed free jet into a confined enclosure

  • 1. Chungnam National Univ., Taejon (Korea, Republic of)
  • 2. Korea Atomic Energy Research Inst., Taejon (Korea, Republic of)

Description

In a CANDU type reactor, one of the 2 independent shutdown systems is a liquid poison injection system (SDS2). The longest poison injector is 21 pitches long. There are 4 nozzle positions per lattice pitch (287.75 mm) and 4 holes per nozzle position. A numerical model is developed in this study to systematically and consistently estimate the concentration and diffusion of the poison injected from SDS2. In order to assess the source-jet model, a comparison was made against the real-jet calculation using actual boundary conditions. The simulation was performed in two-dimensional geometry with 4 nozzle holes aligned in 1 lattice pitch and an injection velocity of 20 m/s. The study has shown that the source-jet model agrees with the experimental results and real-jet simulation. It was also found that the source-jet model can be effectively used for the simulation of liquid poison injection through small holes, of which the simulation is restricted due to the limitation of number of grid points in the real-jet simulation. The source-term model of the liquid poison injection developed in this study is consistent with the actual poison injection system in a CANDU 6 reactor and, therefore, can generate poison concentration data for the safety analysis of the reactor. In the future, it is strongly recommended to perform further study to analyze the transient of the poison injection from helium tank to injection nozzle hole by applying Bernoulli equation

Availability note (English)

Available from INIS in electronic form

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Additional details

Publishing Information

Imprint Pagination
[10 p.]
Report number
INIS-FR--1032

Conference

Title
9. international conference on nuclear engineering
Dates
8-12 Apr 2001
Place
Nice, Acropolis (France)

Optional Information

Notes
8 refs.