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A Study on the Optimal Position for the Secondary Neutron Source in Pressurized Water Reactors

机译:压水堆二次中子源最佳位置的研究

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This paper presents a new and efficient scheme to determine the optimal neutron source position in a model near-equilibrium pressurized water reactor, which is based on the OPR1000 Hanul Unit 3 Cycle 7 configuration. The proposed scheme particularly assigns importance of source positions according to the local adjoint flux distribution. In this research, detailed pin-by-pin reactor adjoint fluxes are determined by using the Monte Carlo KENO-VI code from solutions of the reactor homogeneous critical adjoint transport equations. The adjoint fluxes at each allowable source position are subsequently ranked to yield four candidate positions with the four highest adjoint fluxes. The study next simulates ex-core detector responses using the Monte Carlo MAVRIC code by assuming a neutron source is installed in one of the four candidate positions. The calculation is repeated for all positions. These detector responses are later converted into an inverse count rate ratio curve for each candidate source position. The study confirms that the optimal source position is the one with very high adjoint fluxes and detector responses, which is interestingly the original source position in the OPR1000 core, as it yields an inverse count rate ratio curve closest to the traditional 1/ M line. The current work also clearly demonstrates that the proposed adjoint flux-based approach can be used to efficiently determine the optimal geometry for a neutron source and a detector in a modern pressurized water reactor core.
机译:本文提出了一种新的有效方案,该方案基于OPR1000 Hanul 3号机组第7周期配置在模型近平衡压水反应堆中确定最佳中子源位置。所提出的方案特别根据局部伴随通量分布来分配源位置的重要性。在这项研究中,通过使用蒙特卡洛KENO-VI代码从反应堆均匀临界伴随输运方程的解中确定详细的逐针反应堆伴随通量。随后对每个允许源位置处的伴随通量进行排名,以产生具有四个最高伴随通量的四个候选位置。接下来,通过假设在四个候选位置之一中安装了中子源,该研究使用蒙特卡洛MAVRIC码模拟了核外探测器的响应。对所有位置重复计算。这些检测器响应随后将转换为每个候选源位置的反计数率比曲线。研究证实,最佳源位置是伴随通量和检测器响应非常高的位置,有趣的是,它是OPR1000磁芯中的原始源位置,因为它产生的反计数率比曲线最接近传统的1 / M线。当前的工作还清楚地表明,所提出的基于伴随通量的方法可用于有效地确定现代压水反应堆堆芯中子源和探测器的最佳几何形状。

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