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Spline parameterization method for 2D and 3D geometries based on T-mesh optimization

机译:基于T网格优化的2D和3D几何样条参数化方法

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We present a method to obtain high quality spline parameterization of 2D and 3D geometries for their use in isogeometric analysis. As input data, the proposed method demands a boundary representation of the domain, and it constructs automatically a spline transformation between the physical and parametric domains. Parameterization of the interior of the object is obtained by deforming isomorphically an adapted parametric T-mesh onto the physical domain by applying a T-mesh untangling and smoothing procedure, which is the key of the method. Mesh optimization is based on the mean ratio shape quality measure. The spline representation of the geometry is calculated by imposing interpolation conditions using the data provided by one-to-one correspondence between the meshes of the parametric and physical domains. We give a detailed description of the proposed technique and show some examples. Also, we present some examples of the application of isogeometric analysis in geometries parameterized with our method. (C) 2017 Elsevier B.V. All rights reserved.
机译:我们提出了一种方法来获取2D和3D几何的高质量样条曲线参数化,以用于等几何分析。作为输入数据,提出的方法需要域的边界表示,并且它会自动在物理域和参数域之间构造样条变换。对象内部的参数化是通过应用T网格解缠和平滑过程将适应的参数T网格同形变形到物理域上而获得的,这是该方法的关键。网格优化基于平均比率形状质量度量。通过使用参数域和物理域的网格之间的一对一对应关系提供的数据来施加插值条件,可以计算出几何形状的样条表示。我们将对所提出的技术进行详细说明并显示一些示例。此外,我们还提供了等几何分析在我们的方法参数化的几何中应用的一些示例。 (C)2017 Elsevier B.V.保留所有权利。

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