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Seismic cracking analysis of concrete gravity dams with initial cracks using the extended finite element method

机译:扩展裂缝有限元法分析具有初始裂缝的混凝土重力坝的地震裂缝

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摘要

The seismic crack propagation of concrete gravity dams with initial cracks at the upstream and downstream faces has rarely been studied during strong earthquakes. In this paper, a numerical scheme based on the extended finite element method (XFEM), which has been widely used for the analysis of crack growth, is presented to deal with the numerical prediction of crack propagation in concrete gravity dams. The validity of the algorithm is discussed by comparing results obtained from the proposed XFEM with those reported in the literature. For this purpose, the cracking process and final crack profile of Koyna dam during the 1967 Koyna earthquake are simulated numerically by employing the XFEM. The computed distribution of cracking damage is consistent with the actual condition and the results of model test and available methods in literature, which verifies the validity of the calculation model. Subsequently, the Koyna dam with single and multiple initial cracks is also analyzed using the proposed approach, which is investigated to evaluate the seismic crack propagation of the concrete gravity dam with initial cracks. The effects of initial cracks on the crack propagation and seismic response of the concrete gravity dam are discussed.
机译:在强烈地震期间,很少研究在上游和下游面均具有初始裂缝的混凝土重力坝的地震裂缝传播。本文提出了一种基于扩展有限元法(XFEM)的数值方案,该方案已广泛用于裂缝扩展的分析,用于处理混凝土重力坝裂缝扩展的数值预测。通过比较从建议的XFEM获得的结果与文献中报道的结果,讨论了算法的有效性。为此,使用XFEM对1967年Koyna地震期间Koyna大坝的开裂过程和最终裂缝轮廓进行了数值模拟。计算得出的裂纹损伤分布与实际情况以及模型试验结果和文献中的可用方法相吻合,验证了计算模型的有效性。随后,还使用提出的方法分析了具有单个和多个初始裂缝的科伊纳大坝,并对其进行了研究以评估具有初始裂缝的混凝土重力坝的地震裂缝传播。讨论了初始裂缝对混凝土重力坝裂缝扩展和地震响应的影响。

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