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Ultimate analysis of BWR Mark III reinforced concrete containment subjected to internal pressure

机译:承受内压的BWR Mark III钢筋混凝土密闭结构的最终分析

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Numerical analyses are carried out by using the ABAQUS finite element program to predict the ultimate pressure capacity and the failure mode of the BWR Mark III reinforced concrete containment at Kuosheng Nuclear Power Plant, Taiwan, R.O.C. Material nonlinearity such as concrete cracking, tension stiffening, shear retention, concrete plasticity, yielding of reinforcing steel, yielding of liner plate and degradation of material properties as a result of high temperature effects are all simulated with proper constitutive models. Geometric nonlinearity as a result of finite deformation has also been considered. The results of the analysis show that when the reinforced concrete containment fails, extensive cracks take place at the apex of the dome, the intersection of the dome and the cylinder and the lower part of cylinder where there is a discontinuity in the thickness of the containment. In addition, the ultimate pressure capacity of the containment is 23.9 psi and is about 59 higher than the design pressure l5 psi.
机译:使用ABAQUS有限元程序进行了数值分析,以预测台湾阔国核电站BWR Mark III钢筋混凝土安全壳的极限压力容量和破坏模式。材料的非线性,例如混凝土的开裂,拉伸刚度,剪切保留,混凝土的可塑性,钢筋的屈服,衬板的屈服以及由于高温影响而导致的材料性能下降,都可以通过适当的本构模型进行模拟。还考虑了由于有限变形而导致的几何非线性。分析结果表明,当钢筋混凝土安全壳失效时,在穹顶的顶点,穹顶与圆柱体的交点以及圆柱体的下部会出现大的裂纹,在该处安全壳的厚度不连续。此外,安全壳的极限压力容量为23.9 psi,比设计压力15 psi高约59。

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