利用简单复形建模超曲面

Mattia Natali, M. Attene, G. Ottonello
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引用次数: 5

摘要

本文描述了一个操作管道,利用计算几何来获得关于由不同数量的纯组分组成的材料的结晶行为的有用知识。从现有的纯组分的相关知识出发,我们计算了在给定温度范围内所有可能组成的吉布斯自由能,包括液相和固相。然后,我们利用凸壳法推导出固液相共存,并将得到的液相超曲面建模为简单复曲面。在这样的复合体上,我们提出了新的工具来鲁棒地计算描述系统中任何初始成分的热损失引起的结晶路径的下降线。
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Modeling Liquidus Hypersurfaces through Simplicial Complexes
This paper describes an operational pipeline that exploits computational geometry to derive useful knowledge about the crystallization behaviour of materials composed of varying amounts of pure components. Starting from existing knowledge related to the pure components, we compute the Gibbs free energy of all their possible compositions in a given range of temperatures, both in liquid and solid phases. Then, we exploit the convex hull method to derive the coexistence of solid and liquid phases, and model the resulting liquidus hypersurface as a simplicial complex. On such a complex, we propose novel tools to robustly compute descent lines describing the crystallization path induced by heat loss for any initial composition in the system.
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