McCAD中CAD到CSG转换的新算法

IF 0.5 Q4 NUCLEAR SCIENCE & TECHNOLOGY Journal of Nuclear Engineering and Radiation Science Pub Date : 2023-06-15 DOI:10.3390/jne4020031
M. Harb, D. Leichtle, U. Fischer
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引用次数: 0

摘要

建模和仿真是任何核应用设计过程的核心。对辐射环境的准确描述不仅确保了新技术的可行性,而且有助于操作、维护甚至退役。随着设计的日益复杂,高保真模型已成为设计成熟的必要条件。卡尔斯鲁厄理工学院(KIT)多年来一直在开发McCAD,以促进生成适合核分析的模型的过程。在本文中,概述了新版本代码的主要进展。一种新的转换算法已被证明具有鲁棒性,可以显着减少生成辐射传输模型的处理时间,使其更容易迭代设计细节。还讨论了一种首创的生成分层空洞细胞的能力,初步分析显示了粒子跟踪的性能增益。
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A Novel Algorithm for CAD to CSG Conversion in McCAD
Modeling and simulation lie at the heart of the design process of any nuclear application. An accurate representation of the radiation environment ensures not only the feasibility of new technologies, but it also aids in operation, maintenance, and even decommissioning. With increasingly complex designs, high-fidelity models have become a necessity for design maturity. McCAD has been under development for many years at Karlsruhe Institute of Technology (KIT) to facilitate the process of generating suitable models for nuclear analyses. In this paper, an overview of the major advances in the new version of the code is presented. A novel conversion algorithm has proven to be robust in significantly reducing the processing time to generate radiation transport models, making it easier to iterate on design details. A first-of-a-kind capability to generate hierarchical void cells is also discussed with preliminary analysis showing performance gains for particle tracking.
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来源期刊
CiteScore
1.30
自引率
0.00%
发文量
56
期刊介绍: The Journal of Nuclear Engineering and Radiation Science is ASME’s latest title within the energy sector. The publication is for specialists in the nuclear/power engineering areas of industry, academia, and government.
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