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An efficient graph theoretical method for plate bending finite element analysis via force method

机译:基于力法的板弯曲有限元分析的有效图论方法

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Purpose - This paper seeks to present an efficient algorithm for the formation of null basis for finite element model discretized as rectangular bending elements. The bases obtained by this algorithm correspond to highly sparse and narrowly banded flexibility matrices and such bases can be considered as an efficient tool for optimal analysis of structures.rnDesign/methodology/approach - In the present method, two graphs are associated with finite element mesh consisting of an "interface graph" and an "associate digraph". The underlying subgraphs of the serf-equilibrating systems (SESs) (null vectors) are obtained by graph theoretical approaches forming a null basis. Application of unit loads (moments) at the end of the generator of each subgraph results in the corresponding null vector.rnFindings - In the present hybrid method, graph theory is used for the formation of null vectors as far as it is possible and then algebraic method is utilized to find the complementary part of the null basis. Originality/value - This hybrid approach makes the use of pure force method in the finite element analysis feasible. Here, a simplified version of the algorithm is also presented where the SESs for weighted graphs are obtained using an analytical approach. Thus, the formation of null bases is achieved using the least amount of algebraic operations, resulting in substantial saving in computational time and storage.
机译:目的-本文力图提出一种有效的算法,用于离散化为矩形弯曲元素的有限元模型的零基础的形成。通过该算法获得的基础对应于高度稀疏和窄带的柔韧性矩阵,可以将这些基础视为用于结构优化分析的有效工具。设计/方法/方法-在本方法中,两个图形与有限元网格相关联由“接口图”和“关联图”组成。通过形成空基础的图论方法,获得了自我平衡系统(SESs)(空向量)的基础子图。在每个子图生成器的末尾施加单位载荷(力矩)会产生相应的零向量。rnFindings-在本混合方法中,使用图论尽可能地形成零向量,然后进行代数方法被用来寻找零基础的互补部分。原创性/价值-这种混合方法使在有限元分析中使用纯力法变得可行。在此,还介绍了该算法的简化版本,其中使用分析方法获得了加权图的SES。因此,使用最少数量的代数运算即可实现空基的形成,从而大大节省了计算时间和存储量。

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