Research Article

DESIGN BASIS ACCIDENT ANALYSIS OF A SMALL MODULAR REACTOR

Volume: 3 Number: 3 July 1, 2017
  • Fatih Aydogan
EN

DESIGN BASIS ACCIDENT ANALYSIS OF A SMALL MODULAR REACTOR

Abstract

The International Reactor Innovative and Secure (IRIS) is an integrated small modular reactor (SMR) designed by Westinghouse Electric Company and a consortium of organizations. It has a thermal electric power rating of 1000 MWth and an electric power rating of 335 MWe. Being an SMR that features a derivative pressurized water reactor design, it contains the core, upper plenum, lower plenum, pressurizer, reactor coolant pumps, and steam generators in a single reactor vessel. An important feature of the IRIS is passive safety systems. Passive safety systems don’t require mechanical/electrical inputs for operation and rely on natural laws, material properties, and stored internal energy for hazard mitigation. In this work, a RELAP5 model of IRIS was constructed. A small-break loss-of coolant accident (SBLOCA) is simulated where the six major stages of SBLOCA response: (i) break initiation; (ii) blowdown; (iii) vessel depressurization by condensation and automatic depressurization system (ADS); (iv) pressure equalization; (v) reactor vessel/containment vessel depressurization; and (vi) long-term cooling are demonstrated. This paper demonstrates how efficiently the passive cooling systems work in mitigating the hazard. 

Keywords

References

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Details

Primary Language

English

Subjects

Engineering

Journal Section

Research Article

Authors

Fatih Aydogan This is me

Publication Date

July 1, 2017

Submission Date

June 23, 2017

Acceptance Date

April 7, 2016

Published in Issue

Year 2017 Volume: 3 Number: 3

APA
Aydogan, F. (2017). DESIGN BASIS ACCIDENT ANALYSIS OF A SMALL MODULAR REACTOR. Journal of Thermal Engineering, 3(3), 1241-1258. https://doi.org/10.18186/journal-of-thermal-engineering.323390
AMA
1.Aydogan F. DESIGN BASIS ACCIDENT ANALYSIS OF A SMALL MODULAR REACTOR. Journal of Thermal Engineering. 2017;3(3):1241-1258. doi:10.18186/journal-of-thermal-engineering.323390
Chicago
Aydogan, Fatih. 2017. “DESIGN BASIS ACCIDENT ANALYSIS OF A SMALL MODULAR REACTOR”. Journal of Thermal Engineering 3 (3): 1241-58. https://doi.org/10.18186/journal-of-thermal-engineering.323390.
EndNote
Aydogan F (July 1, 2017) DESIGN BASIS ACCIDENT ANALYSIS OF A SMALL MODULAR REACTOR. Journal of Thermal Engineering 3 3 1241–1258.
IEEE
[1]F. Aydogan, “DESIGN BASIS ACCIDENT ANALYSIS OF A SMALL MODULAR REACTOR”, Journal of Thermal Engineering, vol. 3, no. 3, pp. 1241–1258, July 2017, doi: 10.18186/journal-of-thermal-engineering.323390.
ISNAD
Aydogan, Fatih. “DESIGN BASIS ACCIDENT ANALYSIS OF A SMALL MODULAR REACTOR”. Journal of Thermal Engineering 3/3 (July 1, 2017): 1241-1258. https://doi.org/10.18186/journal-of-thermal-engineering.323390.
JAMA
1.Aydogan F. DESIGN BASIS ACCIDENT ANALYSIS OF A SMALL MODULAR REACTOR. Journal of Thermal Engineering. 2017;3:1241–1258.
MLA
Aydogan, Fatih. “DESIGN BASIS ACCIDENT ANALYSIS OF A SMALL MODULAR REACTOR”. Journal of Thermal Engineering, vol. 3, no. 3, July 2017, pp. 1241-58, doi:10.18186/journal-of-thermal-engineering.323390.
Vancouver
1.Fatih Aydogan. DESIGN BASIS ACCIDENT ANALYSIS OF A SMALL MODULAR REACTOR. Journal of Thermal Engineering. 2017 Jul. 1;3(3):1241-58. doi:10.18186/journal-of-thermal-engineering.323390

Cited By

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