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Design and implementation of a new spherical super element in structural analysis

机译:一种新的结构分析中球形超单元的设计与实现

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Finite Element Method (FEM) has proved to be a powerful tool for the analysis of mechanical problems such as finding natural frequency and deformation of structures. Design and implementation of super elements with a purpose in reduction of computational time along with accuracy is one of the challenges facing engineers in the past decade. In this study a newly spherical super element is designed and implemented to some problems. This element is generated in such a way that the user can select as many numbers of nodes as desired. Proper formulation is presented to generate the shape function for each node in this element. Some examples of static and vibration analysis using this element are performed and results are comparable with high accuracy and less computational time with findings of commercial finite element packages, analytical and experimental methods. This element can be used to analyze hollow spherical structures such as biological cells, ball bearings and pressure vessels.
机译:有限元方法(FEM)已被证明是分析机械问题(如寻找固有频率和结构变形)的有力工具。旨在减少计算时间和准确性的超级元素的设计和实现是工程师在过去十年中面临的挑战之一。在这项研究中,设计了一种新的球形超级元件,并将其应用于某些问题。该元素以用户可以选择所需数量的节点的方式生成。提出了适当的公式来生成此元素中每个节点的形状函数。使用该单元进行了静态和振动分析的一些示例,结果与商业有限元软件包,分析和实验方法的发现相当,具有较高的准确性和更少的计算时间。该元素可用于分析空心球形结构,例如生物细胞,球轴承和压力容器。

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