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LOCA SIMULATIONS OF AP1000 WITH DIFFERENT BREAKS BASED ON RELAP5

机译:基于RELAP5的不同断裂的AP1000的LOCA模拟

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One of design features of AP1000 is its passive safety system. As the newly designed system, the performance of AP1000 under severe accidents causes a lot of concerns. To prevent or minimize being uncovered of the core fuel during LOCAs, many researchers have devoted themselves to simulate LOCAs. In this paper, based on RELAP5, the model of AP1000 was established and validated. LOCA simulations of AP1000 with different breaks were conducted, including LOCAs both on cold leg and hot leg with the break size of 0.1 ft~2 and LOCAs with different break size as 0.01%, 0.1%, 1%, 10%, 20%, 40%, 50% of the cold leg cross section area on cold leg. The result indicates that, for AP1000, LOCA on cold leg is more critical, and the system shows great safety performance under LOCAs with different break sizes on cold leg, especially for LOCA with middle break size because the core decay heat is fully removed by coolant and the cladding temperature decreases soon once the accident happens during the process. The result also reveals that, during the process, the core decay heat is mainly removed by the discharge coolant for large break LOCA, but mainly removed by PRHR HX for small break LOCA.
机译:AP1000的设计功能之一是其被动安全系统。作为新设计的系统,AP1000在严重事故下的性能会导致很多问题。为了防止或最小化在基因座期间被揭开核心燃料,许多研究人员致力于模拟基因座。本文基于RELAP5,建立和验证了AP1000的模型。对AP1000具有不同断裂的LOCA模拟,包括在冷腿和热腿上的基因座,断裂尺寸为0.1ft〜2,距离不同断裂尺寸的基因座为0.01%,0.1%,1%,10%,20%, 40%,50%的冷腿横截面区域在冷腿上。结果表明,对于AP1000,冷腿上的基因座更为关键,并且该系统在洛卡斯下显示出良好的安全性能,在冷腿上具有不同的断裂尺寸,特别是对于带中断尺寸的基因座,因为核心衰变热量通过冷却液完全除去核心腐烂热量一旦事故发生在过程中发生时,包层温度很快就会减少。结果还揭示了,在此过程中,核心腐烂热量主要由放电冷却剂除去大型断裂基因座,而是由PRHR HX除去小断裂基因座的核心。

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