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Thermal-hydraulic study of air-cooled passive decay heat removal system for APRþ under extended station blackout

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The simulation contains two phases based on water depletion: the early phase and the late phase. In the early phase, the volume of water in PCCT was determined to avoid the water depletion in three days after shutdown. In the late phase, when the number of the HXs is greater than 4089 per PCCT, the MARS simulation confirmed the long-term cooling by air is possible under extended Station Blackout (SBO). | Thermal-hydraulic study of air-cooled passive decay heat removal system for APRþ under extended station blackout

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