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A HIGH-ACCU RACY APPROACH TO FINITE ELEMENT ANALYSIS USINGTHE HEXA 27-NODE ELEMENT

机译:使用HEX 27节点元素有限元分析的高精度方法

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In most finite-element-analysis codes, accuracy is achieved through the use of the hexahedron hexa-20 elements (a node at each of the 8 corners and 12 edges of a brick element). Unfortunately, without an additional node in the center of each of the element's 6 faces, nor in the center of the hexa, the hexa-20 elements are not fully quadratic such that its truncation error remains at h~2(0), the same as the error of a hexa-8 element formulation To achieve an accuracy with a truncation error of h~3(0), we need the fully-quadratic hexa-27 formulation. A competitor of the hexa-27 element in the early days was the so-called serendipity cubic hexa-32 solid elements (see Ahmad, Irons, and Zienkiewicz, Int. J. Numer. Methods in Eng., 2:419-451 (1970) [1]). The hexa-32 elements, unfortunately, also suffer from the same lack of accuracy syndrome as the hexa20's. In this paper, we investigate the accuracy of various elements described in the literature including the fully quadratic hexa-27 elements to a shell problem of interest to the pressure vessels and piping community, viz. the shell-element-based analysis of a barrel vault. Significance of the highly accurate hexa-27 formulation and a comparison of its results with similar solutions using ABAQUS hexa-8, and hexa-20 elements, are presented and discussed. Guidelines are proposed for selection of better elements.
机译:在大多数有限元分析代码中,通过使用Hexahedron Hexa-20元件(在8个角上的每一个和砖元件的12个边缘处的节点)来实现精度。不幸的是,没有每个元素的6个面的中心的附加节点,也不是六到的中心,Hexa-20元素并不完全二次,使其截断误差保持在H〜2(0),相同作为Hexa-8元素配方的误差,以达到H〜3(0)的截断误差的精度,我们需要完全二次六六六射27配方。早期六六六六六元素的竞争对手是所谓的偶然立方六六角32个固体元素(参见Ahmad,Irons和Zienkiewicz,int。J.Momer。在Eng.的方法,2:419-451( 1970)[1])。不幸的是,Hexa-32元素也遭受了与六角群20的相同缺乏准确性综合症。在本文中,我们研究了文献中描述的各种元素的准确性,包括完全二次六躯27元素到压力容器和管道界的壳体问题。基于炮弹拱顶的基于壳体的分析。提出并讨论了使用ABAQUS Hexa-8和Hexa-20元素的高精度六曲27制剂的重要性及其与类似溶液的结果的比较。提出了选择更好的元素的指导方针。

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