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Investigating Heavy Water Zero Power Reactors with a New Core Configuration Based on Experiment and Calculation Results

机译:基于实验和计算结果的具有新堆芯配置的重水零功率反应堆研究

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The heavy water zero power reactor (HWZPR), which is a critical assembly with a maximum power of 100?W, can be used in different lattice pitches. The last change of core configuration was from a lattice pitch of 18–20?cm. Based on regulations, prior to the first operation of the reactor, a new core was simulated with MCNP (Monte Carlo N-Particle)-4C and WIMS (Winfrith Improved Multigroup Scheme)–CITATON codes. To investigate the criticality of this core, the effective multiplication factor ( K eff ) versus heavy water level, and the critical water level were calculated. Then, for safety considerations, the reactivity worth of D 2 O, the reactivity worth of safety and control rods, and temperature reactivity coefficients for the fuel and the moderator, were calculated. The results show that the relevant criteria in the safety analysis report were satisfied in the new core. Therefore, with the permission of the reactor safety committee, the first criticality operation was conducted, and important physical parameters were measured experimentally. The results were compared with the corresponding values in the original core.
机译:重水零功率反应堆(HWZPR)是一个关键组件,最大功率为100?W,可用于不同的晶格间距。核心结构的最后变化是从18–20?cm的晶格间距开始的。根据规定,在反应堆首次运行之前,使用MCNP(蒙特卡罗N粒子)-4C和WIMS(温弗瑞斯改进多组方案)-CITATON代码模拟了一个新堆芯。为了研究该岩心的临界度,计算了有效乘数(K eff)对重水位的变化,并计算了临界水位。然后,出于安全考虑,计算了D 2 O的反应性值,安全杆和控制棒的反应性值以及燃料和缓和剂的温度反应性系数。结果表明,新核心满足了安全分析报告中的相关标准。因此,在反应堆安全委员会的许可下,进行了第一次临界操作,并通过实验测量了重要的物理参数。将结果与原始核心中的相应值进行比较。

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