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Free-Form Geometric Modeling by Integrating Parametric and Implicit PDEs

机译:通过集成参数和隐式PDE进行自由形式的几何建模

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摘要

Parametric PDE techniques, which use partial differential equations (PDEs) defined over a 2D or 3D parametric domain to model graphical objects and processes, can unify geometric attributes and functional constraints of the models. PDEs can also model implicit shapes defined by level sets of scalar intensity fields. In this paper, we present an approach that integrates parametric and implicit trivariate PDEs to define geometric solid models containing both geometric information and intensity distribution subject to flexible boundary conditions. The integrated formulation of second-order or fourth-order elliptic PDEs permits designers to manipulate PDE objects of complex geometry and/or arbitrary topology through direct sculpting and free-form modeling. We developed a PDE-based geometric modeling system for shape design and manipulation of PDE objects. The integration of implicit PDEs with parametric geometry offers more general and arbitrary shape blending and free-form modeling for objects with intensity attributes than pure geometric models.
机译:参数PDE技术使用在2D或3D参数域上定义的偏微分方程(PDE)来对图形对象和过程建模,可以统一模型的几何属性和功能约束。 PDE还可以对由标量强度场的水平集定义的隐式形状进行建模。在本文中,我们提出了一种将参数化和隐式三变量PDE集成在一起的方法,以定义包含几何信息和强度分布且受灵活边界条件约束的几何实体模型。二阶或四阶椭圆形PDE的集成公式允许设计人员通过直接雕刻和自由形式建模来操纵具有复杂几何形状和/或任意拓扑的PDE对象。我们开发了基于PDE的几何建模系统,用于形状设计和PDE对象的操作。与纯几何模型相比,隐式PDE与参数几何的集成为具有强度属性的对象提供了更通用和任意的形状混合和自由形式建模。

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