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Comparison of the expected damage patterns from two- and three-dimensional nonlinear dynamic analyses of a roller compacted concrete dam

机译:碾压混凝土坝二维和三维非线性动力分析的预期破坏模式比较

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The seismic performance of the tallest roller-compacted concrete gravity dam in Turkey is investigated in this study. For this purpose, two- and three-dimensional nonlinear dynamic finite element analyses were conducted to investigate the expected damage under simulated ground motions. Based on the results of finite element simulations, it was found that the three-dimensional behaviour of the dam is substantially different from the idealised two-dimensional monolith behaviour, even for a dam having monoliths separated with transverse joints. In addition, it was determined that in order to limit the cracking at the base of the dam, higher strength grout-enriched concrete must be used on the upstream and downstream faces. This study demonstrates the importance of three-dimensional modelling for gravity dams built in relatively narrow valleys along with the significance of the modelling of the nonlinear response for seismic performance assessment.
机译:本研究对土耳其最高的碾压混凝土重力坝的抗震性能进行了研究。为此,进行了二维和三维非线性动力有限元分析,以研究模拟地面运动下的预期破坏。根据有限元模拟的结果,发现大坝的三维特性与理想的二维整体式材料行为大不相同,即使对于具有整体式材料且横向接头分开的大坝也是如此。另外,已经确定,为了限制大坝底部的开裂,必须在上游和下游面上使用高强度的富含水泥的混凝土。这项研究证明了在相对狭窄的山谷中建造重力坝的三维建模的重要性,以及非线性响应建模对地震性能评估的重要性。

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