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Shell finite element of reinforced concrete for internal pressure analysis of nuclear containment building

机译:用于核安全壳内部压力分析的钢筋混凝土壳有限元

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This paper describes a 9-node degenerated shell finite element (FE), an analysis program developed for ultimate pressure capacity evaluation and nonlinear analysis of a nuclear containment building. The shell FE developed adopts the Reissner-Mindlin (RM) assumptions to consider the degenerated shell solidification technique and the degree of transverse shear strain occurring in the structure. The material model of the concrete determines the level of the concrete stress and strain by using the equivalent stress-equivalent strain relationship. When a crack occurs in the concrete, the material behavior is expressed through the tension stiffening model that takes adhesive stress into account and through the shear transfer mechanism and compressive strength reduction model of the crack plane. In addition, the failure envelope proposed by Niwa is adopted as the crack occurrence criteria for the compression-tension region, and the failure envelope proposed by Yamada is used for the tension-tension region. The performance of the program developed is verified through various numerical examples. The analysis based on the application of the shell FE developed from the results of verified examples produced results similar to the experiment or other analysis results.
机译:本文介绍了一个9节点的退化壳有限元(FE),这是一个为最终压力容量评估和核安全壳建筑物的非线性分析而开发的分析程序。所开发的壳体有限元采用Reissner-Mindlin(RM)假设来考虑退化的壳体固化技术和结构中出现的横向剪切应变的程度。混凝土的材料模型通过使用等效应力-等效应变关系确定混凝土应力和应变的水平。当混凝土中出现裂缝时,材料性能通过考虑了粘结应力的拉伸刚度模型以及通过裂缝平面的剪切传递机制和抗压强度降低模型来表示。另外,将Niwa提出的破坏包络线作为压缩-拉伸区域的裂纹发生基准,将Yamada提出的破坏包络线用作拉伸-拉伸区域。通过各种数值示例验证了所开发程序的性能。基于已验证示例的结果开发的基于外壳FE的应用程序进行的分析得出的结果与实验或其他分析结果相似。

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