JI Duan, CAO Xue-wu. Study on Primary Coolant System Depressurization Effect Factorin Pressurized Water Reactor[J]. Atomic Energy Science and Technology, 2006, 40(4): 385-390. DOI: 10.7538/yzk.2006.40.04.0385
Citation: JI Duan, CAO Xue-wu. Study on Primary Coolant System Depressurization Effect Factorin Pressurized Water Reactor[J]. Atomic Energy Science and Technology, 2006, 40(4): 385-390. DOI: 10.7538/yzk.2006.40.04.0385

Study on Primary Coolant System Depressurization Effect Factorin Pressurized Water Reactor

  • The progression of high-pressure core melting severe accident induced by very small break loss of coolant accident plus the loss of main feed water and auxiliary feed water failure is studied, and the entry condition and modes of primary cooling system depressurization during the severe accident are also estimated. The results show that the temperature below 650 ℃ is preferable depressurization input temperature allowing recovery of core cooling, and the available and effective way to depressurize reactor cooling system and to arrest very small break loss of coolant accident sequences is activating pressurizer relief valves initially, then restoring the auxiliary feedwater and opening the steam generator relief valves. It can adequately reduce the primary pressure and keep the capacity loop of long-term core cooling.
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