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Observed finite element capabilities and limitations from multi-team simulations of three concrete shell structures

机译:通过三种混凝土壳体结构的多团队模拟观察到的有限元能力和局限性

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This paper describes a study whose primary intention was to determine how well state-of-the-art analyticalumerical methods could predict the response of three shell structures in the service-level and strength-level regimes. Presented herein are the results of six finite element analyses, performed by different analysts of three, reinforced concrete shells. The shells were scale models of: an end-supported cylinder with edge beams; an end-supported, three-unit folded plate without edge beams; and a hyperboloid of revolution. The results of the analyses generally showed good agreement between predicted and measured displacements before cracking. Significant differences were noted between the different numerical results, and between numerical and experimental results from post-cracking to structural collapse. Nevertheless, it is concluded that the finite element approaches presented here can provide a suitable platform for the analysis and design of these shells if used by a experienced designer.
机译:本文介绍了一项研究,其主要目的是确定最先进的分析/数值方法在服务水平和强度水平制度中如何预测三种壳体结构的响应。本文介绍的是六种有限元分析的结果,这些分析由三个钢筋混凝土壳体的不同分析人员执行。壳体是以下模型的比例:带有边梁的末端支撑圆柱体;端部支撑的三单元折叠板,不带横梁;和革命的双曲面。分析结果通常表明,开裂之前的预测位移与实测位移之间具有良好的一致性。从开裂到结构倒塌,不同的数值结果之间以及数值和实验结果之间都存在显着差异。但是,可以得出结论,如果有经验的设计师使用此处介绍的有限元方法,可以为这些壳体的分析和设计提供一个合适的平台。

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