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Forced-Vibration Tests and Numerical Modeling of the Daniel-Johnson Multiple-Arch Dam

机译:Daniel-Johnson多拱坝的强制振动试验和数值建模

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Forced-vibration tests were conducted on the Daniel-Johnson multiple-arch dam located in northeastern Quebec, Canada. This outstanding structure for its size and complexity is the largest multiple-arch dam in America. The tests aimed to determine the dynamic properties of the dam-reservoir-foundation (DRF) system to be used as a basis for the update of a finite-element model of the system required for further seismic performance assessment. The test procedure is described and the modal properties derived from the recordings are presented together with the extraction procedure, which was particularly complicated because of the coupling of the numerous global and local modes of such a complex structure. Several linear three-dimensional finite-element models were developed to be correlated with the measured dynamic properties. A parametric study on the dam-foundation elasticity was first performed, and the influence of the reservoir water modeling was then extensively studied. The selected model properties resulting from the numerical correlation study enabled reproduction with good accuracy of eight of the measured vibration modes, making the model suitable for seismic analyses. (c) 2017 American Society of Civil Engineers.
机译:在加拿大魁北克东北部的Daniel-Johnson多拱坝上进行了强制振动试验。这种突出结构的大小和复杂性是美国最大的多拱坝。旨在确定大坝 - 水库 - 基础(DRF)系统的动态特性,作为更新进一步地震性能评估所需的系统的有限元模型的基础。描述了测试程序,并且从记录中衍生的模态特性与提取过程一起呈现,这是特别复杂的,因为这种复杂结构的许多全局和局部模式的耦合。开发了几种线性三维有限元模型与测量的动态特性相关。首先进行了对坝上基础弹性的参数研究,然后广泛研究了储层水建模的影响。由数值相关性研究产生的所选择的模型属性使得具有良好的振动模式的良好精度能够再现,使得适用于地震分析的模型。 (c)2017美国土木工程师协会。

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