The Proceedings of the International Conference on Nuclear Engineering (ICONE)
Online ISSN : 2424-2934
2015.23
Session ID : ICONE23-1645
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ICONE23-1645 ABWR3 : Passive double confinement and SA population dose evaluation for the innovative ABWR
Keiji MatsumotoKenji HosomiTakashi Sato
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CONFERENCE PROCEEDINGS FREE ACCESS

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Abstract

iB1350 stands for an innovative, intelligent and inexpensive BWR 1350. It is the first Generation 111.7 reactor after the Fukushima Daiichi accident. The iB1350 uses the Mark W containment and the in-containment filtered venting system (IFVS). The Mark W containment is made of reinforced concrete and has double cylinder FP barriers. There are also IC/PCCS pools, a fuel pool and a dryer separator (DS) pool on the top slab of the containment. These pools work as water seal for FP leakage through the top slab. Most FP such as CsI are scrubbed in the pools. The containment head is also submerged in the reactor well pool. The pool water works as shielding for radiation from the reactor core during normal operation and water seal for FP scrubbing during a severe accident. The base mat concrete is covered with the S/P and the core catcher that is also submerged with corium flooding water during an accident. Therefore, the Mark W containment has passive double confinement barriers for FP. Moreover, the IFVS works as in-containment filtered venting system that scrubs FP from the wet well (WW) and the dry well (DW). The filtered venting tank is arranged in the outer well (OW) of the Mark W containment. Even noble gases and organic iodine going through the filtered venting system are still confined inside the containment and never released directly to the environment. The IFVS uses the innovative passive containment cooling system (iPCCS) as the pre-stage heat removal system. The iPCCS has a normal open suction line from the WW. Therefore, FP are scrubbed in the S/P at first and then vented into the filtered venting tank. After the DW suction line of the iPCCS is opened all the steam is cooled and condensed in the heat exchanger. Most FP are trapped in the condensate and returned into the WW through the condensate return line of the iPCCS. Therefore, the Mark W containment has excellent FP double confinement barriers and the in-containment filtered venting system that enable passively no emergency evacuation outside the immediate vicinity of the plant for a SA. Furthermore, there is the severe accident standby gas treatment system (SASGTS). It is an active filtration system for a SA that can function during a SA. The iB1350 enables no land contamination with the SASGTS. The results of population dose evaluation using RADTRAD code show excellent performance of the FP confinement of the iB1350.

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© 2015 The Japan Society of Mechanical Engineers
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