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首页> 外文期刊>Journal of nuclear engineering and radiation science >Safety Analysis of Indonesia's Multipurpose Reactor During Irradiation of Natural UO2 Pin Target at Power Ramp Test Facility
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Safety Analysis of Indonesia's Multipurpose Reactor During Irradiation of Natural UO2 Pin Target at Power Ramp Test Facility

机译:电力斜坡试验设施下天然UO2引脚靶辐射期间印度尼西亚多功能反应器的安全性分析

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摘要

To support the utilization of the power ramp test facility (PRTF) at the reactor Serba Guna GA Siwabessy (RSG-GAS) reactor, the investigation of safety parameters both on the target and the reactor during the irradiation of natural UO2 has been conducted. The program for the analysis of reactor transient (PARET) and Monte Carlo N-particle version 6 (MCNP6) codes were integrated for thermal-hydraulic and neutronic analysis under the reactivity insertion phenomenon. The reactivity insertion and linear heat rate (LHR) were calculated by MCNP6 to confirm that the maximum values are well below the safety limits. Also, the code computed the reactor kinetic parameters to provide inputs for the PARET code to evaluate the reactor response due to the target movement at the PRTF. The target moves from the farthest position to the nearest one traveling 440 mm and then moves back to the original position. The safety analysis indicated that both maximum reactivity insertion and LHR values did not exceed the safety limits. The target induces maximum reactivity insertion of 0.023%dk/k and produces the maximum LHR of 137.53 WIcm and 275 .06 Wlcrn; when the reactor operates at 15 MW and 30MW, respectively. The PARET simulation results showed that the reactor power oscillated due to the target movement. Therefore, the recommended velocities of the target are below 0.17 m/s and 0.08 m/s for reactor power of 15 MW and 30MW, respectively, to avoid the reactor scram, and no safety limits are exceeded.
机译:为了支持在塞尔巴-古纳-加-西瓦贝西(RSG-GAS)反应堆上使用功率斜坡测试设施(PRTF),对天然UO2辐照期间目标和反应堆的安全参数进行了调查。将反应堆瞬态分析程序(PARET)和蒙特卡罗N粒子第6版(MCNP6)程序集成,用于反应性插入现象下的热工水力和中子分析。MCNP6计算了反应性插入和线性热耗率(LHR),以确认最大值远低于安全限值。此外,该程序还计算了反应堆动力学参数,为PARET程序提供输入,以评估由于目标在PRTF处移动而产生的反应堆响应。目标从最远的位置移动到最近的位置,移动440 mm,然后移动回原始位置。安全分析表明,最大反应性插入和LHR值均未超过安全限值。该靶诱导的最大反应性插入为0.023%dk/k,产生的最大LHR为137.53 WIcm和275.06 Wlcrn;当反应堆分别以15兆瓦和30兆瓦的功率运行时。PARET模拟结果表明,由于目标移动,反应堆功率发生振荡。因此,在反应堆功率为15 MW和30 MW时,目标的建议速度分别低于0.17 m/s和0.08 m/s,以避免反应堆紧急停堆,且不超过安全极限。

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