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Numerical simulation study of spallation in reinforced concrete plates subjected to blast loading

机译:爆炸荷载作用下钢筋混凝土板层裂的数值模拟研究

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In the design of protective structures, concrete walls are often used to provide effective protection against blast from incidental events. With a reasonable configuration and proper reinforcement, the protective structure could sustain a specified level of blast without global failure. However, the concrete wall may generate spallation on the back side of the wall, posing threats to the personnel and equipment inside the structure. For this concern, it is important to establish appropriate concrete spallation criteria in the protective design. Earlier analytical studies have been based on simplified one-dimensional wave theory, which does not consider the complex three-dimensional stress conditions in the case of close-in explosion and the structural effects. This paper presents a numerical simulation study on the concrete spallation under various blast loading and structural conditions. A sophisticated concrete material model is employed, taking into account the strain rate effect. The erosion technique is adopted to model the spallation process. Based on the numerical results, the spallation criteria are established for different levels of spallation. Comparison of the analytical results with experimental data shows a favorable agreement. It is also shown that the structural effects can become significant for relatively large charge weight and longer distance scenarios.
机译:在防护结构的设计中,通常使用混凝土墙来提供有效的防护,以防意外事件引起的爆炸。通过合理的配置和适当的加固,该防护结构可以承受特定级别的爆炸,而不会造成整体故障。但是,混凝土墙可能会在墙的背面产生剥落,对结构内部的人员和设备构成威胁。为此,在防护设计中建立适当的混凝土散裂标准很重要。早期的分析研究是基于简化的一维波动理论,该理论没有考虑近距离爆炸情况下的复杂三维应力条件和结构效应。本文提供了在不同爆炸荷载和结构条件下混凝土剥落的数值模拟研究。考虑到应变率效应,采用了复杂的混凝土材料模型。采用侵蚀技术来模拟剥落过程。基于数值结果,针对不同级别的散裂建立散裂标准。分析结果与实验数据的比较显示出良好的一致性。还表明,对于较大的装料重量和较长的距离情况,结构效应可能会变得很明显。

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