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Automated static condensation method for local analysis of large finite element models

机译:用于大型有限元模型局部分析的自动静态冷凝方法

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摘要

In this paper, we introduce an efficient new model reduction method, named the automated static condensation method, which is developed for the local analysis of large finite element models. The algebraic multilevel substructuring procedure is modified appropriately, and then applied to the original static condensation method. The retained substructure, which is the local finite element model to be analyzed, is defined, and then the remaining part of the global model is automatically partitioned into many omitted substructures in an algebraic perspective. For an efficient condensation procedure, a substructural tree diagram and substructural sets are established. Using these, the omitted substructures are sequentially condensed into the retained substructure to construct the reduced model. Using several large practical engineering problems, the performance of the proposed method is demonstrated in terms of its solution accuracy and computational efficiency, compared to the original static condensation method and the superelement technique.
机译:在本文中,我们介绍了一种有效的新模型简化方法,称为自动静态冷凝方法,该方法是为大型有限元模型的局部分析而开发的。代数多级子构造过程经过适当修改,然后应用于原始的静态凝聚方法。定义保留的子结构,该子结构是要分析的局部有限元模型,然后将全局模型的其余部分从代数的角度自动划分为许多省略的子结构。为了进行有效的冷凝过程,建立了子结构树图和子结构集。使用这些,将省略的子结构顺序压缩到保留的子结构中,以构造简化模型。与原始的静态冷凝法和超元素技术相比,该方法通过解决一些大型实际工程问题,以其求解精度和计算效率证明了其性能。

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