DOI QR코드

DOI QR Code

Design Concept of Hybrid SIT

복합안전주입탱크(Hybrid SIT) 설계개념

  • Kwon, Tae-Soon (Korea Atomic Energy Research Institute, Thermal Hydraulic Safety Division) ;
  • Euh, Dong-Jin (Korea Atomic Energy Research Institute, Thermal Hydraulic Safety Division) ;
  • Kim, Ki-Hwan (Korea Atomic Energy Research Institute, Thermal Hydraulic Safety Division)
  • 권태순 (한국원자력연구원, 열수력안전연구부) ;
  • 어동진 (한국원자력연구원, 열수력안전연구부) ;
  • 김기환 (한국원자력연구원, 열수력안전연구부)
  • Received : 2014.10.06
  • Accepted : 2014.10.08
  • Published : 2014.12.01

Abstract

The recent Fukushima nuclear power plant accidents shows that the core make up at high RCS pressure condition is very important to prevent core melting. The core make up flow at high pressure condition should be driven by gravity force or passive forces because the AC-powered safety features are not available during a Station Black Out (SBO) accident. The reactor Coolant System (RCS) mass inventory is continuously decreased by releasing steam through the pressurizer safety valves after reactor trip during a SBO accident. The core will be melted down within 2~3 hours without core make up action by active or passive mode. In the new design concept of a Hybrid Safety Injection Tank (Hybrid SIT) both for low and high RCS pressure conditions, the low pressure nitrogen gas serves as a charging pressure for a LBLOCA injection mode, while the PZR high pressure steam provides an equalizing pressure for a high pressure injection mode such as a SBO accident. After the pressure equalizing process by battery driven initiation valve at a high pressure SBO condition, the Hybrid SIT injection water will be passively injected into the reactor downcomer by gravity head. The SBO simulation by MARS code show that the core makeup injection flow through the Hybrid SIT continued up to the SIT empty condition, and the core heatup is delayed as much.

Keywords

References

  1. Tae-Soon Kwon et al., Hybrid High Pressure Injection Tank during SBO, KNDS Spring Meeting, Taebaek, Korea, May 26-27, 2011.
  2. Sang-il Lee, Hee-Cheon No et al., Assessment of RELAP5/MOD3.1 for Gravity-driven Injection Experiment in the Core Makeup Tank of the CARR Passive Reactor(CO-1300), NUREG/IA-0134, 1996.
  3. Jinzao Zhang et al., Application of the WCOBRA/TRAC best-estimate methodology to the AP600 large Break LOCA analysis, NED, Vol. 186, p279-301, 1998.
  4. Tae-Soon Kwon et al., Hybrid SIT for Passive Safety System,, KNS Spring Meeting, Gwangju, Korea, May 30-31, 2013.