首页> 外文期刊>Advances in Mechanical Engineering >Evaluation of anti-explosion performance of Shuibuya concrete-faced rockfill dam slabs subjected to strong shock waves caused by an underwater explosion:
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Evaluation of anti-explosion performance of Shuibuya concrete-faced rockfill dam slabs subjected to strong shock waves caused by an underwater explosion:

机译:水布ya混凝土面板堆石坝面板在水下爆炸的强烈冲击波作用下的抗爆性能评估:

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A concrete plastic-damage model, the extended Drucker–Prager model for rockfill, and acoustic elements for water were introduced and applied to the impact fracture analysis of a concrete-faced rockfill dam–water three-dimensional system. The plastic-damage dynamic analysis process was used in combination with the concrete compressive and tensile damage model. The 223-m high Shuibuya concrete-faced rockfill dam was analyzed using an explicit integration. Numerical simulations of the damage threshold, rockfill modeling, and interface processing were conducted to research the effect of the anti-explosion performance that occurs when a concrete slab is subjected to an underwater shock wave. The simulation results indicate that the main regions of weakness in the slabs during an underwater shock wave are determined by the tensile damage. The slab’s anti-knock weak areas appear in the right dam abutment and the top of the left dam. The anti-knock performance in the upper slab is inferior to that of the lower sl...
机译:引入了混凝土塑性损伤模型,用于堆石的扩展Drucker-Prager模型以及用于水的声学元件,并将其应用于混凝土面板堆石坝-水三维系统的冲击断裂分析。塑性损伤动态分析过程与混凝土的压缩和拉伸损伤模型结合使用。使用显式积分对223米高的水布ya混凝土面板堆石坝进行了分析。进行了损伤阈值,堆石模型和界面处理的数值模拟,以研究混凝土板在水下受到冲击波时发生的防爆性能的影响。仿真结果表明,在水下冲击波作用下,板坯的主要薄弱区域由拉伸损伤确定。平板的抗爆弱区出现在右坝台和左坝顶。上部平板的抗爆性能不如下部平板的抗爆性能。

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