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首页> 外文期刊>Journal of Mechanical Design >A Boundary-Blending Method for the Parametrization of 2D Surfaces With Highly Irregular Boundaries
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A Boundary-Blending Method for the Parametrization of 2D Surfaces With Highly Irregular Boundaries

机译:边界高度不规则的二维曲面参数化的边界混合方法

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In this paper three methods are used to generate boundary-conformed parametrization of 2D surfaces. They include two conventional approaches, the Coons method and the Laplace method, and a new method, called "boundary-blending method," In this new method, unidirectional 2D parametrization is achieved based on the geometric information of the given boundary curves. A dual offsetting procedure is adopted. The geometric properties considered for offsettings include position, curvature, and normal of the two facing parent curves. The algorithm contains two adjustable parameters that enable fine-tuning of this parametrization. This unidirectional process can be easily extended to bi-directional parametrization via superposition to include both boundary pairs. Examples show that this algorithm leads to reasonable smooth blending of the boundaries, and the dual process achieves seamless converging at the middle. It is more robust than the Coons method with regard to parametrization anomalies and relieves the relatively large uneven grid distribution problem experienced in the Laplace method. We believe that this method provides a useful alternative for the 2D boundary-conformed parametrization problems.
机译:在本文中,使用了三种方法来生成2D曲面的边界协调参数化。它们包括Coons方法和Laplace方法两个常规方法,以及称为“边界混合方法”的新方法。在该新方法中,基于给定边界曲线的几何信息实现了单向2D参数化。采用双重补偿程序。考虑偏移的几何属性包括两条面向父曲线的位置,曲率和法线。该算法包含两个可调参数,可以对该参数进行微调。该单向过程可以通过叠加轻松扩展到双向参数化,以包括两个边界对。实例表明,该算法可实现边界的合理平滑融合,并且双重处理可在中间实现无缝收敛。在参数化异常方面,它比Coons方法更健壮,并缓解了拉普拉斯方法中遇到的相对较大的网格不均匀分布问题。我们认为,该方法为二维边界符合参数化问题提供了有用的替代方法。

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