首页> 外文期刊>Journal of Performance of Constructed Facilities >Numerical Investigation into Underwater Explosion-Resistant Performance of an Arch Dam Considering Its Transverse Contraction and Control Joints
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Numerical Investigation into Underwater Explosion-Resistant Performance of an Arch Dam Considering Its Transverse Contraction and Control Joints

机译:考虑其横向收缩和控制关节的拱坝水下防爆性能的数值研究

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Arch dams appear vulnerable to underwater-explosion (UNDEX) shock loadings due to their relatively thin bodies. Many seismic analyses have highlighted the significant nonlinear joint contact behavior in dynamic responses of arch dams. This paper examines the effects of the transverse contraction and control joints, particularly the combination of the two joint types, on the UNDEX-resistant performance of arch dams. The investigation takes the form of a numerical case study of a 141-m-high arch dam subjected to an UNDEX using ABAQUS/Explicit. A surface-interaction-based approach that can consider damage initiation, evolution, and ultimate failure of the shear keys was employed for the joint modeling. The results show that the shear keys undergo considerable shearing damage under a 50-kg trinitrotoluene-equivalent UNDEX, which is mainly distributed at the upper halves of the joint interfaces. The radial displacement of and tensile damage to the dam in the basic case are not strictly enveloped by those in the two extreme cases. The damage-preventing effect of the control-joint implementation seems somewhat less pronounced than expected. This study has identified the significant role of transverse joints in UNDEX-induced responses of arch dams. Extreme approaches to the joint modeling in arch dams do not necessarily produce extreme results for the UNDEX-resistant performance evaluation. The control-joint implementation should be reviewed on a case-by-case basis in design practices. The surface-interaction-based approach could probably be usefully and easily employed in engineering practices.
机译:拱坝由于其相对较薄的坝体,似乎容易受到水下爆炸(UNDEX)冲击荷载的影响。许多地震分析都强调了拱坝动力响应中显著的非线性节理接触行为。本文研究了横向收缩缝和控制缝,尤其是两种缝型的组合对拱坝抗UNDEX性能的影响。本研究采用ABAQUS/Explicit软件对一座141米高的拱坝进行数值算例研究。基于表面相互作用的方法,可以考虑损伤开始,进化,最终失败的剪切键用于关节建模。结果表明,在50kg三硝基甲苯当量的UNDEX作用下,剪切键发生了相当大的剪切损伤,主要分布在接头界面的上半部分。在基本情况下,大坝的径向位移和拉伸损伤并没有被两种极端情况下的径向位移和拉伸损伤严格包围。控制联合实施的损害预防效果似乎没有预期的那么明显。本研究确定了横向接缝在拱坝的UNDEX诱发反应中的重要作用。拱坝接缝建模的极端方法不一定会产生极端的抗不死性能评估结果。控制联合实施应在设计实践中逐案审查。基于表面相互作用的方法可能在工程实践中有用且容易使用。

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