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A Methodology for Updating 3D Solid Models of Complex Monumental Structures Based on Local Point-based Meshes

机译:基于局部点基网眼更新复杂纪念结构的3D实体模型的方法

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Structural changes introduced during the life of monuments contribute to produce complex geometrical configurations that cannot be properly represented in standard solid modeling systems designed for current engineering applications such as finite element analysis (FEA). Likewise, point-based 3D meshes - laser-scanner or photogrammetric -, although capable of constructing detailed representation of surfaces, cannot be used for direct application in structural analysis because they do not produce complete and unambiguous solid models. To tackle this issue, we merged these two approaches into a unified methodology capable of updating a 3D solid model, representing the entire monument as reconstructed in its presumed original configuration, with information from a 3D mesh model containing a detailed geometrical description of the recent structural state of a specific sector of the same monument. The methodology is based on a series of functions that operate in the Mesh and Solid Modeling Space. The mesh model is aligned via 3D registration and, subsequently, segmented for its conversion to a solid model. Finally, this solid updates the solid representation of the entire monument via Boolean operations. We test the procedure on the Main Platform of the Huaca de la Luna, Trujillo, Peru, one of the most important massive earthen structures of the Moche civilization. Solid models are defined in AutoCAD while 3D meshes are constructed via the photogrammetric program Agisoft PhotoScan. The results indicate that the proposed methodology is effective at transferring complex geometrical and topological features from the mesh to the solid modeling space. The updated solid model can be represented and visualized in any standard CAD software, and utilized for FEA and augmented reality applications.
机译:古迹的生命过程中引入的结构变化有助于产生一种不能在设计用于电流工程应用标准的实体建模系统,如有限元分析(FEA)来适当地表示复杂的几何构型。同样地,点为基础的三维网格 - 激光扫描仪或摄影测量 - ,虽然能够构造表面的详细的表示的,不能用于结构分析直接应用,因为它们不产生完整的和明确的实体模型。为了解决这个问题,我们合并这两种方法为能够从3D更新三维实体模型,占整个纪念碑作为其推测原始配置重建,随着信息网包含最近的结构的详细几何描述模型的统一方法状态的相同碑的具体部门。该方法是基于一系列的网格和实体建模空间操作功能。网格模型是通过3D配准对齐,并随后分割为它的转换成实体模型。最后,这种固体更新通过布尔运算整个纪念碑的固体表示。我们的瓦卡德拉红月的主要平台,特鲁希略,秘鲁,莫切文明的最重要的大规模土结构的一个上测试的过程。实体模型在AutoCAD限定,而3D网格经由摄影程序Agisoft PhotoScan构成。结果表明,该方法是在离网传输复杂的几何和拓扑特征的实体建模空间有效。更新的实体模型可以被表示并在任何标准CAD软件可视化,以及用于FEA和增强现实应用中。

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