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Transient analysis of a locked rotor/shaft seizure accident involving the EU-DEMO WCLL Breeding Blanket primary cooling circuits
被引:2
|作者:
Ciurluini, C.
[1
]
D'Onorio, M.
[1
]
Giannetti, F.
[1
]
Caruso, G.
[1
]
Del Nevo, A.
[2
]
机构:
[1] Sapienza Univ Rome, Dept Astronaut Elect & Energy Engn, Corso Vittorio Emanuele II,244, I-00186 Rome, Italy
[2] ENEA CR Brasimone, ENEA FSN ING SIS, I-40032 Camugnano, BO, Italy
关键词:
DEMO;
Primary heat transfer system;
Balance of plant;
RELAP5;
Accident analysis;
HEAT-TRANSFER;
DESIGN;
D O I:
10.1016/j.fusengdes.2022.113396
中图分类号:
TL [原子能技术];
O571 [原子核物理学];
学科分类号:
0827 ;
082701 ;
摘要:
The EU-DEMO Water-Cooled Lithium-Lead (WCLL) Breeding Blanket (BB) main subsystems to be cooled are the Breeder Zone (BZ) and the First Wall (FW). Each subsystem will be equipped with an independent Primary Heat Transfer System (PHTS). Within the framework of the EUROfusion Work Package Breeding Blanket research program, several accidents belonging to the category of "Decrease in Coolant System Flow Rate" were studied. The activity was aimed at evaluating the blanket and primary cooling systems thermal-hydraulic performances during such transient conditions. A complete model including the BB and related PHTS circuits has been developed at Sapienza University of Rome. A modified version of RELAP5/Mod3.3 system code has been used to perform the calculations. The simulation results showed that a locked rotor/shaft seizure of a BZ or a FW main coolant pump is the most challenging scenario. BZ and FW system behavior has been analyzed following this initiating event with the goal of the design improvement and to individuate the need for preventive measures. The influence of loss of off-site power on the accident evolution has also been investigated. Moreover, management strategies have been proposed for different reactor components. Calculations demonstrate that the current blanket and PHTS design is appropriate to cope with these kinds of accident scenarios.
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页数:12
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