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Dynamic inversion method for the material parameters of a high arch dam and its foundation

机译:高拱坝材料参数的动态反演方法及其基础

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The overall mechanical behavior of the structure of an arch dam is comprehensively reflected by the vibration modal information included in measured vibration response. Hence, the results obtained from inverting material parameters based on measured vibration data are often superior to those based on static monitoring data. In this study, a dynamic inversion method for the material parameters of a high arch dam and its foundation is proposed on the basis of the measured vibration response. First, an arch dam prototype test is conducted to obtain the measured dynamic displacement response as input. Then, a stochastic subspace identification method based on singular entropy is formulated to determine the modal parameters. Second, a dynamic elastic modulus (DEM) with a great influence on the modal parameters is selected as the material parameter to be inverted. Then, a response surface model (RSM), which reflects the nonlinear relationship between the material and modal parameters of each zone, is constructed. Latin hypercube sampling is used to generate the sample library of the DEM. The RSM is fitted by modal parameters calculated on the basis of the arch dam finite element model (FEM) and is applied to replace the FEM. Finally, the optimization mathematical model of the inversion of the DEM is established. Then, the objective function is optimized through a genetic algorithm, and the optimal combination of the DEM in each zone is inverted. The modal parameters of the arch dam calculated by inversion results are consistent with those measured by variation law and values. Therefore, the inversion results are reasonable and reliable. This method provides a new idea for determining the material parameters of a high arch dam and its foundation during the operation period. (C) 2019 Elsevier Inc. All rights reserved.
机译:拱坝结构的整体力学行为被测量振动响应所包含的振动模态信息全面地反映。因此,根据测量的振动数据从反相材料参数获得的结果通常优于基于静态监测数据的结果。在该研究中,基于测量的振动响应提出了一种用于高拱坝材料参数的动态反转方法及其基础。首先,进行拱坝原型测试以获得测量的动态位移响应作为输入。然后,配制了基于奇异熵的随机子空间识别方法以确定模态参数。其次,选择具有很大影响模态参数的动态弹性模量(DEM)作为倒置的材料参数。然后,构造了反映每个区域的材料与模态参数之间的非线性关系的响应表面模型(RSM)。 LATIN HyperCube采样用于生成DEM的示例库。 RSM由基于Arch Dam有限元模型(FEM)计算的模态参数,并应用于更换FEM。最后,建立了DEM反演的优化数学模型。然后,通过遗传算法优化目标函数,并且每个区域中的DEM的最佳组合被反转。通过反转结果计算的拱坝的模态参数与通过变异法和值测量的那些。因此,反演结果是合理可靠的。该方法提供了在运行期间确定高拱坝及其基础的新思路。 (c)2019 Elsevier Inc.保留所有权利。

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