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DIRECT 3D MOC FOR WHOLE-CORE TRANSPORT CALCULATION

机译:直接3D MOC进行全核心运输计算

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Due to the need for high accuracy and more complex core geometry, whole-core transport calculations with the MOC are demanded. Recently, a 2D+1D method has been proposed to perform 3D whole-core transport calculations, but it is not easy to apply this method to the cases with complex geometry in the axial direction. Direct 3D MOC calculations are thus required. This approach is however limited by the amount of computer memory which is required for the ray tracing data that is required by the MOC. This paper presents a modular tracing technique and corresponding angular quadrature sets, which can greatly reduce the amount of ray tracing information, making it practical for the MOC to deal with the large 3D problems. In this paper, we introduce the model of the modular ray tracing technique and give some results of our method.
机译:由于需要高精度和更复杂的堆芯几何形状,因此需要使用MOC进行全堆芯运输计算。近来,已经提出了一种2D + 1D方法来执行3D全核传输计算,但是将这种方法应用于在轴向方向上具有复杂几何形状的情况并不容易。因此需要直接3D MOC计算。但是,这种方法受到MOC所需的光线跟踪数据所需的计算机内存量的限制。本文提出了一种模块化的跟踪技术和相应的角度正交集,可以大大减少射线跟踪信息的数量,使MOC处理大型3D问题变得切实可行。在本文中,我们介绍了模块化射线跟踪技术的模型,并给出了我们的方法的一些结果。

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