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Reducing 3D MOC Storage Requirements with Axial On-the-fly Ray Tracing

机译:用轴向速度划线降低3D MOC存储要求

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The Method of Characteristics (MOC) is a popular method to solve the multi-group neutron transport equation. While this method is most widely used in two dimensions, extension to three dimensions allows for more accurate calculation of axial leakage and reaction rates. However, the 3D form of MOC can be computationally prohibitive. One concern is the massive memory requirements imposed by storing all segments of 3D tracks. In this study, an alternative approach is presented for axially extruded geometries that only saves segments in two dimensions. This is accomplished by first creating a 2D xy-plane that incorporates all radial detail at every axial level. Then, standard 2D ray tracing is applied to this plane. Axial extruded regions are constructed during segmentation, each containing an axial mesh. During transport sweeps the 3D segments are reconstructed on-the-fly using 2D segment lengths and 1D axial meshes. This strategy implicitly transforms geometries into an axially extruded representation. The resulting algorithm consumes far less memory with minimal computational overhead for common reactor physics problems.
机译:特性(MOC)的方法是解决多组中子传输方程的流行方法。虽然这种方法在两个尺寸中最广泛地使用,但三维的延伸允许更准确地计算轴向泄漏和反应速率。然而,3D形式的MOC可以计算越大。一个问题是通过存储3D轨道的所有片段来施加的大量内存要求。在该研究中,呈现一种替代方法,用于轴向挤出的几何形状,其仅节省两个维度。这是通过首先创建一个2D XY平面来实现,该平面在每个轴向水平上结合所有径向细节。然后,将标准的2D射线跟踪应用于该平面。轴向挤出区域在分段期间构造,每个区域含有轴向网。在运输过程中,扫描3D段使用2D段长度和1D轴向网格在飞行中重建。该策略隐式地将几何形状转换为轴向挤出的表示。生成的算法消耗较少的存储器,具有最小的常见反应器物理问题的计算开销。

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