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Creating geometry and mesh models for nuclear reactor core geometries using a lattice hierarchy-based approach

机译:使用基于格层次的方法为核反应堆堆芯几何创建几何和网格模型

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Nuclear reactor cores are constructed as rectangular or hexagonal lattices of assemblies, where each assembly is itself a lattice of fuel, control, and instrumentation pins, surrounded by water or other material that moderates neutron energy and carries away fission heat. We describe a system for generating geometry and mesh for these systems. The method takes advantage of information about repeated structures in both assembly and core lattices to simplify the overall process. The system allows targeted user intervention midway through the process, enabling modification and manipulation of models for meshing or other purposes. Starting from text files describing assemblies and core, the tool can generate geometry and mesh for these models automatically as well. Simple and complex examples of tool operation are given, with the latter demonstrating the generation of meshes with 12 million hexahedral elements in <30 min on a desktop workstation, using about 4 GB of memory. The tool is released as open source software as part of the MeshKit mesh generation library.
机译:核反应堆堆芯被构造为矩形或六边形的组件格子,其中每个组件本身都是燃料,控制和仪表销的格子,被水或其他可缓和中子能量并带走裂变热的材料包围。我们描述了一种为这些系统生成几何和网格的系统。该方法利用了有关组装和核心晶格中重复结构的信息,以简化整个过程。该系统允许目标用户在过程中进行干预,从而能够为网格划分或其他目的修改和操纵模型。从描述装配和核心的文本文件开始,该工具还可以自动为这些模型生成几何图形和网格。给出了工具操作的简单和复杂示例,其中后者演示了在台式工作站上在不到30分钟的时间内使用约4 GB的内存生成具有1200万个六面体元素的网格的情况。该工具作为MeshKit网格生成库的一部分作为开​​源软件发布。

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