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Earthquake performance evaluation of three-dimensional roller compacted concrete dams

机译:三维滚筒压实混凝土坝地震性能评价

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A roller compacted concrete (RCC) dam should be analyzed under seismic ground motions for different conditions such as empty reservoir and full reservoir conditions. This study presents three-dimensional earthquake response and performance of a RCC dam considering materially non-linearity. For this purpose, Cine RCC dam constructed in Aydm, Turkey, is selected in applications. The three-dimensional finite element model of Cine RCC dam is obtained using ANSYS software. The Drucker-Prager material model is considered in the materially nonlinear time history analyses for concrete and foundation rock. Furthermore, hydrodynamic effect was investigated in linear and non-linear dynamic analyses. Researchers observe that how the tensile and compressive stresses change by hydrodynamic pressure effect. The hydrodynamic pressure of the reservoir water is modeled with the fluid finite elements based on the Lagrangian approach. In this study, dam body and foundation are modeled with welded contact. The displacements and principle stress components obtained from the linear and non-linear analyses with and without reservoir water are compared each other. Principle stresses during earthquake were obtained at the most critical point in the upstream face of dam body. Besides, the change of displacements and stresses by crest length were investigated. Moreover demand-capacity ratio criteria were also studied under linear dynamic and nonlinear analysis. Earthquake performance analyses were carried out for different cases and evaluated. According to linear and nonlinear analysis, hydrodynamic water effect is obvious in full reservoir situation. On the other hand, higher tensile stresses were observed in linear analyses and then non-linear analyses were performed and compared with each other.
机译:应在诸如空储层和全水库条件下的不同条件下进行地震地面运动分析辊压缩混凝土(RCC)大坝。本研究提出了考虑物质非线性的RCC大坝的三维地震响应和性能。为此目的,在Aydm,土耳其中构建的Cine RCC大坝在应用中选择。使用ANSYS软件获得Cine RCC大坝的三维有限元模型。德鲁克 - 普拉格材料模型被认为是混凝土和基础岩石的物质非线性时间历史分析。此外,在线性和非线性动态分析中研究了流体动力学效应。研究人员观察到拉伸和压缩应力如何通过流体动力学效应变化。基于拉格朗日方法,水库水的流体动力学压力用流体有限元建模。在本研究中,坝体和基础采用焊接接触进行建模。彼此比较从带有贮存水和没有贮存水的线性和非线性分析获得的位移和原理应力分析。地震期间的原理在坝体上游面上的最关键点处得到了地震。此外,研究了嵴长度的位移和应力的变化。此外,还在线性动态和非线性分析下研究了需求 - 能力比标准。对不同病例进行地震性能分析并进行了评估。根据线性和非线性分析,全水库情况下的流体动力学效应显而易见。另一方面,在线性分析中观察到更高的拉伸应力,然后进行非线性分析并彼此进行比较。

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