Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
6763414 | Nuclear Engineering and Design | 2013 | 7 Pages |
Abstract
Small reactors can apply to local power demands or remote areas. SMART, which can produce 90Â MWe of electricity and 40,000Â tons/day of sea-water desalination for a 100,000 population city, is a promising advanced integral type small reactor. The thermal hydraulic analysis code with a drift flux model, TASS/SMR, was developed for a conservative simulation of a small break loss of coolant accident in SMART. Taking into account SMART-specific inherent characteristics, the code adopts the Chexal-Lellouche correlation for a drift flux model. The capability of TASS/SMR code is validated using the results of the experimental data. The code predicts conservatively the void distribution compared with the experimental data. TASS/SMR calculation predicts reasonably major phenomena for the SBLOCA and is more conservative than or nearly the same as the results of the best estimated realistic system code, MARS. TASS/SMR code can be used for a SBLOCA analysis of SMART.
Related Topics
Physical Sciences and Engineering
Energy
Energy Engineering and Power Technology
Authors
Young-Jong Chung, Soo Hyung Kim, Gyu Hyeung Lee, Won Jae Lee,