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Analysis on Impact of Fuel Thermal Conductivity Degradation (TCD) on Large Break Loss of Coolant Accidents of CAP1000

机译:燃料导热系数降低对CAP1000冷却液事故大破坏损失的影响分析

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Under high burnup conditions, thermal conductivity of fuel pellet degrades, which is referred to as thermal conductivity degradation (TCD). TCD phenomenon influences fuel average temperature and fuel storage energy under steady state condition before loss of coolant accident (LOCA) and further influences peak cladding temperature (PCT) during large break LOCA process. In this study, sensitivity study on double ended guillotine break of cold leg in CAP1000 at different burnup conditions was performed, using large break LOCA analysis code WCOBRA/TRAC and PCTs under different conditions were obtained. The modified NFI (Nuclear Fuels Institute) TCD model was adopted to model fuel conductivity after degradation in analysis and decrease of peaking factors including FQ and after 30GWD/MTU was also considered. Sensitivity analysis showed that: after considering the influence of TCD and peaking factor burndown, the PCT limiting case did not occur in low burnup range again, but occurred at burup of about 29GWD/MTU. Compared to other burnup points, the first and second peak values of PCT at that burnup point were all at the highest level. Performing of this study could prefer reference for analysis and estimation of large break LOCA of passive nuclear power plants under high burnup conditions.
机译:在高燃耗条件下,燃料芯块的热导率降低,这被称为热导率降低(TCD)。 TCD现象会在冷却剂损失事故(LOCA)之前的稳态条件下影响燃料平均温度和燃料存储能量,并进一步影响大断裂LOCA过程中的峰值熔覆温度(PCT)。在这项研究中,使用大断裂LOCA分析代码WCOBRA / TRAC和PCT在不同条件下,对CAP1000在不同燃尽条件下的冷腿双断头断头进行了敏感性研究。采用改进的NFI(核燃料研究所)TCD模型来对燃料电导率进行建模,以进行分析后的降解和峰值因子(包括FQ)的降低以及30GWD / MTU的考虑。敏感性分析表明:在考虑了TCD和峰值因子燃尽的影响之后,PCT限制情况在低燃尽范围内不再发生,而是在约29GWD / MTU的爆发时发生。与其他燃尽点相比,该燃点处的PCT的第一个和第二个峰值均处于最高水平。进行本研究可能更可为分析和估算高燃耗条件下的被动式核电厂的大断裂LOCA提供参考。

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