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首页> 外文期刊>Annals of nuclear energy >Design simulation studies of pipe mounted boron concentration meter
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Design simulation studies of pipe mounted boron concentration meter

机译:管道安装硼浓度计的设计仿真研究

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Design simulation studies on pipe mounted on line boron meter is carried out using FLUKA Monte Carlo package. The boron meter works on the principle of neutron absorption by B-10 atoms. The inverse relationship of boron concentration versus neutron count rate is fitted using a mathematical function to derive the calibration curve. In reactors, boron concentration is required to be measured for different dimension pipes carrying boron solutions. Hence, there is a need to evolve a mechanically simple and generic design boron meter. The studies showed that compared to conventional source attenuation geometry, the backscatter geometry boron meter is better suited for reactor applications. Generic calibration curves can be obtained by optimizing the distance between the solution pipe and the neutron source. Experiments conducted in backscatter geometry for two different diameter solution pipes generated overlapping count rate versus B-10 concentration curves. (C) 2019 Elsevier Ltd. All rights reserved.
机译:使用FLUKA蒙特卡洛软件包对安装在管线硼仪上的管道进行了设计仿真研究。硼计的工作原理是B-10原子吸收中子。使用数学函数拟合硼浓度与中子计数率的反比关系,以得出校准曲线。在反应堆中,需要测量载有硼溶液的不同尺寸管道的硼浓度。因此,需要发展一种机械上简单且通用的硼计。研究表明,与常规源衰减几何形状相比,后向散射几何硼仪更适合于反应堆应用。可以通过优化溶液管和中子源之间的距离来获得通用的校准曲线。在两个不同直径的溶液管的反向散射几何形状中进行的实验产生了重叠的计数率与B-10浓度曲线。 (C)2019 Elsevier Ltd.保留所有权利。

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