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首页> 外文期刊>Journal of Computing in Civil Engineering >Sketching Finite-Element Models within a Unified Two-Dimensional Framework
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Sketching Finite-Element Models within a Unified Two-Dimensional Framework

机译:在统一的二维框架内草绘有限元模型

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摘要

Complicated menu-based, command line, or scriptable interfaces used in most simulation tools create an unnatural working environment for model development and analysis. Even engineers and scientists familiar with such systems spend significant time converting hand-drawn designs into digital models for simulation. Subsequently, they convert these results into other formats for visualization. These detailed steps lead to many hours of transcribing, rather than interpreting results. To address this problem, we present a unified two-dimensional sketch-based finite-element system, termed 2DSketchFEA, which integrates drawing and recognition of common engineering symbols with geometric meshing, finite-element analysis, and visualization, all within a unified "sketchpad." The novelty of this work is provided by the sketching pad interface, an upgraded geometric quad meshing algorithm, and the integration of these tools with a FEA solver into a single platform. The result is a system that is easy and rapidly used by the analyst to study model behavioral phenomena. In this paper, we present example model construction and simulation results, each conducted in less than five minutes, and each interpreted by the system using primitive sketching commands. The emphasis of this work is on models within a two-dimensional space constructed of conventional one- and two-dimensional finite elements.
机译:大多数仿真工具中使用的复杂的基于菜单的命令行或可编写脚本的界面为模型开发和分析创建了不自然的工作环境。即使是熟悉此类系统的工程师和科学家,也要花费大量时间将手绘设计转换为用于仿真的数字模型。随后,他们将这些结果转换为其他格式以进行可视化。这些详细的步骤导致许多时间的转录,而不是解释结果。为了解决这个问题,我们提出了一个统一的基于二维草图的有限元系统,称为2DSketchFEA,该系统将常见工程符号的绘制和识别与几何网格划分,有限元分析和可视化集成在一起,全部都在一个统一的“草图板”中。”草图板界面,升级的几何四边形网格划分算法以及将这些工具与FEA求解器集成到单个平台中,提供了这项工作的新颖性。结果是,分析人员可以轻松,快速地使用它来研究模型行为现象。在本文中,我们提供了示例模型的构建和仿真结果,每个过程都在不到五分钟的时间内进行,并且每个结果都由系统使用原始的草绘命令来解释。这项工作的重点是在由传统的一维和二维有限元构成的二维空间内的模型。

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