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Natural Circulation Level Optimization and the Effect during ULOFAccident in the SPINNOR Reactors

机译:自然循环水平优化和纺纱反应器ULOFACCINT期间的效果

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Natural circulation level optimization and the effect during loss of flow accident in the 250 MWt MOX fuelled small Pb-Bi Cooled non-refueling nuclear reactors (SPINNOR) have been performed. The simulation was performed using FI-ITB safety code which has been developed in ITB. The simulation begins with steady state calculation of neutron flux, power distribution and temperature distribution across the core, hot pool and cool pool, and also steam generator. When the accident is started due to the loss of pumping power the power distribution and the temperature distribution of core, hot pool and cool pool, and steam generator change. Then the feedback reactivity calculation is conducted, followed by kinetic calculation. The process is repeated until the optimum power distribution is achieved. The results show that the SPINNOR reactor has inherent safety capability against this accident.
机译:采用自然循环水平优化和流动事故丧失过程中的效果,燃料小型PB-BI冷却的非加油核反应堆(三星)。使用在ITB中开发的FI-ITB安全代码进行了模拟。仿真开始于核心,热水池和凉爽池中的中子通量,配电和温度分布的稳态计算,以及蒸汽发生器。由于事故发生,由于泵送电源损失,配电和核心,热水池和凉爽池的温度分布,以及蒸汽发生器变化。然后进行反馈反应性计算,然后进行动力学计算。重复该过程直到实现最佳功率分布。结果表明,Spinnor反应器具有对该事故的固有的安全性能力。

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