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A Multiscale Materials Modeling Method With Seamless Zooming Capability Based on Surfacelets

机译:基于曲面的具有无缝缩放能力的多尺度材料建模方法

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摘要

In multiscale materials modeling, it is desirable that different levels of details can be specified in different regions of interest without the separation of scales so that the geometric and physical properties of materials can be designed and characterized. Existing materials modeling approaches focus more on the representation of the distributions of material compositions captured from images. In this paper, a multiscale materials modeling method is proposed to support interactive specification and visualization of material microstructures at multiple levels of details, where designer's intent at multiple scales is captured. This method provides a feature-based modeling approach based on a recently developed surfacelet basis. It has the capability to support seamless zoom-in and zoom-out. The modeling, operation, and elucidation of materials are realized in both the surfacelet space and the image space.
机译:在多尺度材料建模中,希望可以在不同的关注区域中指定不同级别的细节,而不必分离尺度,以便可以设计和表征材料的几何和物理特性。现有的材料建模方法更多地集中于从图像捕获的材料成分的分布表示。在本文中,提出了一种多尺度材料建模方法,以支持交互式规范和材料微观结构在多个细节级别的可视化,从而捕获了设计者在多个尺度上的意图。该方法提供了基于最近开发的Surfacelet的基于特征的建模方法。它具有支持无缝放大和缩小的功能。在表面空间和图像空间中都可以实现材料的建模,操作和说明。

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