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Damage analysis of arch concrete dams subjected to underwater explosion

机译:水下爆炸对拱形混凝土坝的破坏分析

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摘要

The nonlinear behavior of arch concrete dams subjected to underwater explosions was investigated. Pressure waves were spherically modeled using a 3-D finite element method. The nonlinear behavior of concrete was modeled using the concrete damage plasticity model. In addition, absolute wave formulation was used to develop a fully-coupled model incorporating the propagation of the shock wave and water-dam interaction. Analysis of an arch concrete dam subject to underwater explosion was performed upon model verification. The dynamic response of the dam subject to the underwater explosion was studied for different sizes of explosions at different depths. The results showed that the closer the point to the explosive source, the sooner the impression and damage was caused by the blast. It was clear that the middle part of the dam facing the explosion was the first location to incur damage and then cracks extended to the downstream face and abutments. Finally, cracks extended to the bottom of the dam. The results of the dynamic analysis and dissipated energy by the loss of elements' resistance indicated that the time slice of 150 ms was appropriate to analyze arch concrete dam structure subject to an underwater explosion. In addition, for a given amount of explosives, an increase in the depth of explosion corresponded to an increase in the maximum displacement of the upstream face of the dam. The results also confirmed that the damage distribution to the arch concrete dam subject to an underwater explosion depended upon the amount and depth of explosive materials. (C) 2019 Published by Elsevier Inc.
机译:研究了水下爆炸对拱形混凝土坝的非线性影响。使用3-D有限元方法对压力波进行球形建模。使用混凝土损伤可塑性模型对混凝土的非线性行为进行建模。另外,使用绝对波公式来建立一个包含激波传播和水坝相互作用的全耦合模型。通过模型验证,对遭受水下爆炸的拱形混凝土坝进行了分析。针对不同深度,不同深度的爆炸,研究了水下爆炸对坝体的动力响应。结果表明,爆炸点越靠近爆炸源,爆炸就越容易给人造成冲击和伤害。显然,面向爆炸的大坝中部是遭受破坏的第一个位置,然后裂缝扩展到下游面和桥台。最后,裂缝扩展到大坝的底部。动力分析的结果以及由于单元阻力的损失而耗散的能量表明,150 ms的时间片适合分析水下爆炸引起的拱形混凝土坝结构。另外,对于给定数量的炸药,爆炸深度的增加对应于坝上游面最大位移的增加。结果还证实,水下爆炸对拱形混凝土坝的破坏分布取决于爆炸物的数量和深度。 (C)2019由Elsevier Inc.发布

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