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detection probe is mounted outside the spool piece for detecting the separation of the control rod from the FMCRD, or of the hollow piston from the ball nuts. Figure 2.12.5 illustrates the FMCRD.

  1. Reactor pressure vessel (RPV) and reactor core internals (Cis)

The RPV and the Cis have been redesigned for optimization to be compatible with the RIPs and the FMCRD. Figure 2.12.6 illustrates an ABWR RPV and CL

The RPV measures about 7.1m in inner diameter and about 21m in total height (inner size). Structural features are, among others, the dish-shaped heads compatible with the RIP arrangements, the conical supporting skirts, the main steam nozzles with flow limiting capabilities able to handle the main steam pipe breaks, the inner flanges for reducing the upper head sizes, and the reduced numbers of weld lines in the highly radiation exposed zones around the core by the extensive use of large scale forged steel components.

The ABWR Cis have the following features, among others: size reduction by the use of low

pressure drop steam-water separators, their short standpipes, and mono-block type upper lattice plates; and increased vibration resistance by the two-deck in-core stabilizers.

  1. Reinforced concrete containment vessel (rccv)

The BWR RCCV can be designed as small and with a comparatively low design pressure, because the pressure suppression method is used. The ABWR also uses a cylindrical RCCV with pressure suppression. The RCCV has steel liners on its inner surface. It houses a cylindrical drywell surrounding the RPV, a cylindrical suppression chamber, a base-mat, and other structures. It measures approximately 29m in inner diameter (cylindrical part) and 36m in total height. Finally, horizontal vent tubes replace the conventional vertical vent tubes.

A reinforced concrete diaphragm floor in the RCCV partitions the drywell and the suppression chamber.

The RCCV bears seismic forces transmitted from the RPV to the RCCV, and seismic forces being loaded directly to the RCCV, together with the reinforced concrete walls of the reactor building,

to the other control rod drive

Figure 2.12.6 ABWR reactor pressure vessel (RPV)

Figure 2.12.5 Fine motion control rod drive (FMCRD) and core internals (Cl)

since the RCCV is integrated with the reactor building floors, the spent fuel pool and other structures.

RPV lop head

RPV top spray nozzle

stud bolt

nut

support bracket

low-pressure water flooder sparger

con Irol red guide tube

RPV support skirt

CRD housing,

flange

steam dryer

too fuel guide

core support plate

low-pressure flooder nozzle high-pressure core flooder sparger

shroud support leg,

recirculation pump di Ifereatial pressure detection nozzle

steam-water separaloi RPV

bracket (RPV top head)

neutron flux instrumentation guide tube

pump deck

control rod Juel assembly core shroud

steam dryer skirt, shroud head feedwater sparger feedwater inlet nozzle stand pipe high-pressure core flooder nozzle high-pressure core flooder piping

leak detection tap

main steam outlet nozzle with (low limiter

read or coolant recirculation pump core support plate differential pressure del cd ion nozzle

neutron flux instrumentation housing

NSRA, Japan

2~ 122