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Damage mechanism and response of reinforced concrete containment structure under internal blast loading

机译:爆炸荷载作用下钢筋混凝土围护结构的破坏机理及响应

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Reinforced concrete containment (RC) is the most significant component of the nuclear power plant. It may lead to serious disaster owning to the leakage of radioactive materials as the reasons of internal explosion of reinforced concrete containment caused by earthquakes, fires, gas explosions or terrorist attacks, etc.The objective of this paper is to investigate the behavior of reinforced concrete containment, numerical simulation taking into account fluid-solid coupling interaction is conducted for the analysis on the dynamic responses of reinforced concrete containment under internal blast loading using LS-DYNA software, especially focusing on its damage mechanism.The generation and the propagation of blast wave and its effect on a containment structure are discussed using Arbitrary Lagrangian Eulerian (ALE) algorithm and multiple material models. The analysis results of the containment have been compared by empirical equations. Parametric studies have also been performed for internal detonation under different scale distances at a standoff distance of 20. m in the RC containment. The results indicate that the influences of scale distances and mesh qualities of structure on dynamic response and damage mechanism of the structure are analyzed to assess the structural anti-explosion capability.
机译:钢筋混凝土安全壳(RC)是核电站的最重要组成部分。由于地震,火灾,瓦斯爆炸或恐怖袭击等引起的钢筋混凝土密闭容器内部爆炸,可能由于放射性物质的泄漏而导致严重灾害。本文的目的是研究钢筋混凝土的性能。进行了数值模拟,考虑了流固耦合作用,使用LS-DYNA软件分析了内部爆炸荷载作用下钢筋混凝土安全壳的动力响应,尤其是对其破坏机理进行了研究。使用任意拉格朗日欧拉(ALE)算法和多种材料模型讨论了其对安全壳结构的影响。通过经验方程对安全壳的分析结果进行了比较。在RC密闭环境中,还进行了参数研究,研究了在不同尺度距离下,间距为20 m的内部爆轰。结果表明,分析了尺度距离和结构的网格质量对结构动力响应和破坏机理的影响,从而评价了结构的防爆性能。

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