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Damage prediction of RC containment shell under impact and blast loading

机译:冲击和爆炸载荷作用下钢筋混凝土安全壳的损伤预测

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摘要

There is world wide concern for safety of nuclear power installations after the terrorist attack on World Trade Center in 2001 and several other civilian structures in the last decade. The nuclear containment structure in many countries is a double shell structure (outer shell a RCC and inner a pre-stressed concrete). The outer reinforced concrete shell protects the inner shell and is designed for external loading like impact and blast. A comparative study of non-linear response of reinforced concrete nuclear containment cylindrical shell subjected to impact of an aircraft (Phantom) and explosion of different amounts of blast charges have been presented here. A material model which takes into account the strain rate sensitivity in dynamic loading situations, plastic and visco-plastic behavior in three dimensional stress state and cracking in tension has been developed earlier and implemented into a finite element code which has been validated with published literature. The analysis has been made using the developed software. Significant conclusions have been drawn for dissimilarity in response (deflections, stresses, cracks etc.) of the shell for impact and blast loading.
机译:在2001年恐怖分子袭击世界贸易中心和过去十年中的其他几处民用建筑之后,全世界对核电设施的安全引起了广泛关注。在许多国家,核安全壳结构是双壳结构(外壳是RCC,内部是预应力混凝土)。钢筋混凝土外层保护内壳,专为外部载荷(例如冲击和爆炸)而设计。在此,对飞机撞击(幻影)和不同爆炸装药量爆炸下的钢筋混凝土核安全壳圆柱壳的非线性响应进行了比较研究。考虑到动态载荷情况下的应变速率敏感性,三维应力状态下的塑性和粘塑性行为以及张力开裂的材料模型,已经得到了较早的开发,并已实现为有限元代码,该代码已被公开文献验证。已使用开发的软件进行了分析。对于冲击和爆炸载荷作用下的壳体响应(挠度,应力,裂纹等)的差异,已得出重要结论。

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