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Mixed-coefficient panel model for evaluating the overall deformation behavior of high arch dams using the spatial clustering

机译:使用空间聚类评估高拱坝整体变形行为的混合系数面板模型

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The mathematical monitoring models that are currently used for the displacement of arch dams are mostly established for a single monitoring point, without considering the spatial association of the displacements at multiple monitoring points. The main purpose of this paper is to develop and verify a mixed-coefficient panel model for dam displacements of multiple monitoring points. To maintain the largest similarities of the deformation mechanism of different monitoring points represented by one panel model, the displacement monitoring points on dam body are first divided into several groups according to the similarity index of the incremental distance between their measured displacement time series. The mixed-coefficient panel models are then established for each clustered zone in which the adjustment coefficient of the FEM-calculated hydraulic component is determined to be identical for all the monitoring points in the same zone, whereas the regression coefficients of the temperature and time effect component are considered to be variable, in order to reflect the similarities and differences of deformation mechanism in different dam regions. Based on the hydraulic, hysteretic, seasonal, and time (HHST) causal factors, the proposed panel model is verified by the measured radial displacement field of the Jinping-I arch dam. The modeling results demonstrate that the proposed mixed-coefficient panel model can effectively represent the overall deformation behavior and structural integrity of a high arch dam, and it has good performance in the interpretation and prediction of the dam displacement and the inversion analysis of viscoelastic parameters of the dam body concrete.
机译:目前用于拱坝位移的数学监测模型主要是为单个监测点建立的,而不考虑在多个监视点处的位移的空间关联。本文的主要目的是开发和验证多个监测点的大坝位移的混合系数面板模型。为了保持由一个面板模型表示的不同监测点的变形机制的最大相似之处,根据其测量的位移时间序列之间的增量距离的相似性指数,坝体上的位移监测点首先被分成几组。然后为每个聚类区域建立混合系数面板模型,其中确定了FEM计算的液压元件的调整系数对于同一区域中的所有监测点相同,而回归系数的温度和时间效应组分被认为是可变的,以反映不同坝区域中变形机制的相似性和差异。基于液压,滞后,季节性和时间(HHST)因果区,所提出的面板模型通过测量 - I拱门大坝的测量径向位移场来验证。建模结果表明,所提出的混合系数面板模型可以有效地代表高拱坝的整体变形行为和结构完整性,并且在坝位移的解释和预测中具有良好的性能和粘弹性参数的反演分析坝体混凝土。

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