首页> 外文会议>ASME Turbomachinery Technical Conference and Exposition >AUTOMATED MESHING ALGORITHM FOR GENERATING AS-MANUFACTURED FINITE ELEMENT MODELS DIRECTLY FROM AS-MEASURED FAN BLADES AND INTEGRALLY BLADED DISKS
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AUTOMATED MESHING ALGORITHM FOR GENERATING AS-MANUFACTURED FINITE ELEMENT MODELS DIRECTLY FROM AS-MEASURED FAN BLADES AND INTEGRALLY BLADED DISKS

机译:用于直接从AS测量的风扇刀片和一体的叶片磁盘产生制造的有限元模型的自动网格化算法

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Automated tetrahedral meshing from manifold tessellated optical scan data is investigated to determine its viability as an approach for finite element analysis. This approach avoids the costs of constructing a volumetric representation of the scan data that can be meshed with conventional grid generation approaches. This paper demonstrates an auto-meshing algorithm for inserted airfoil and integrally bladed rotor hardware. These automatically generated models are compared to experimentally obtained frequencies and mode shapes for validation. In an effort to compare the fidelity as well as the effect of mesh density on analytical convergence rate, manually generated all-hexahedral models are compared against the auto-meshed tetrahedral finite element models. CPU time, solution accuracy, and mesh convergence are evaluated to determine the viability of automatically generated tetrahedral meshes versus the standard approach of manually generating hex-dominant meshes. This paper demonstrates that given the power of modern CPUs, automatically generated all-tetrahedral meshes can serve as a viable alternative to manually generated hex-dominant finite element models, especially when these meshes can be refined for solution convergence within the auto-mesher. This new approach effectively solves both the mesh convergence problem while demonstrating that models based on as-measured geometry can be rapidly built with virtually no human interaction.
机译:研究了来自歧管曲面的自动四面体啮合,研究了其作为有限元分析的方法的可行性。该方法避免了构造可以用传统网格生成方法啮合的扫描数据的体积表示的成本。本文演示了一种用于插入翼型和整体叶片转子硬件的自动啮合算法。将这些自动生成的模型与实验获得的频率和模式形状进行比较,用于验证。为了比较保真度以及网眼密度对分析会聚速率的影响,将手动产生的全六面体模型与自动网纹的四面体有限元模型进行比较。评估CPU时间,解决方案准确性和网格融合,以确定自动生成的四面体网格的可行性与手动生成十六进制主导网格的标准方法。本文展示了鉴于现代CPU的力量,自动生成的全四面体网格可以作为手动产生十六进制主导有限元模型的可行替代品,尤其是当这些网格可以精制用于自动默认内的溶液会聚时。这种新方法有效解决了网格融合问题,同时展示了基于以测量的几何形状的模型可以快速构建,几乎没有人类的交互。

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