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Investigation of water length effects on the modal behavior of a prototype arch dam using operational and analytical modal analyses

机译:使用操作和分析模态分析研究水长对原型拱坝模态行为的影响

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This study determines the water length effects on the modal behavior of a prototype arch dam using Operational and Analytical Modal Analyses. Achievement of this purpose involves construction of a prototype arch dam-reservoir-foundation model under laboratory conditions. In the model, reservoir length was taken to be as much as three times the dam height. To determine the experimental dynamic characteristics of the arch dam using Operational Modal Analysis, ambient vibration tests were implemented for empty reservoir and three different reservoir water lengths. In the ambient vibration tests, the dam was vibrated by natural excitations provided from small impact effects and the response signals were measured using sensitive accelerometers. Operational Modal Analysis software process signals collected from the ambient vibration tests, and Enhanced Frequency Domain Decomposition and Stochastic Subspace Identification techniques estimated modal parameters of the dams. To validate the experimental results, 3D finite element model of the prototype arch dam was modeled by ANSYS software for empty reservoir and three different reservoir water lengths, and dynamic characteristics of each model were determined analytically. At the end of the study, experimentally and analytically identified dynamic characteristics compared to each other. Also, changes on the natural frequencies along to water length are plotted as graphs. Results suggest that reservoir water complicates the modal behavior of the arch dam significantly.
机译:本研究使用操作和分析模态分析确定水长对原型拱坝的模态行为的影响。为了达到这个目的,需要在实验室条件下构建拱坝-水库-地基原型模型。在模型中,水库长度被认为是坝高的三倍之多。为了使用操作模态分析确定拱坝的实验动力特性,对空水库和三种不同水库水长进行了环境振动测试。在环境振动测试中,大坝受到小的撞击影响而产生的自然激励而振动,并使用灵敏的加速度计测量了响应信号。运营模态分析软件处理从环境振动测试中收集到的信号,以及增强的频域分解和随机子空间识别技术估算大坝的模态参数。为了验证实验结果,使用ANSYS软件对原型拱坝的3D有限元模型进行了建模,以建立空库和三种不同的库水长度,并通过解析确定了每个模型的动力特性。在研究结束时,通过实验和分析确定了彼此之间的动态特性。同样,自然频率随水长的变化被绘制为图表。结果表明,水库水使拱坝的模态行为显着复杂化。

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