基于时变灰色模型的小湾超高拱坝变形临界阈值估计

IF 3.7 Q1 WATER RESOURCES
Er-feng Zhao , Bo Li , Hao Chen , Bing-bing Nie
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引用次数: 0

摘要

小湾超高拱坝的结构性能主要受长期运行过程中的外荷载和坝体混凝土及坝基岩体的时变特性的影响。通过地质模型超载试验和实测安装垂线时间序列,分析了拱坝结构的时空演化特征,并对其力学性能进行了评价。随后,利用多监测点实测的变形值,提出了挠度曲线的变形质心来表示典型坝段的震级和独特的分布规律。由历史测量时间序列推导出质心临界椭球的椭圆方程。利用传统的统计模型从实测变形值中提取流体静力和季节分量,残差作为灰色分量。为准确预测超高拱坝在未来运行过程中的变形行为演变,建立了时变灰色模型。在所建立的模型中,将常系数修正为随时间变化的函数,并通过引入遗忘因子显著提高预测精度。最后,对小湾拱坝的临界阈值进行了估计,并推导出预测椭球体。研究结果可为超高拱坝实际运行安全评价提供技术支持,并有助于对异常变化进行预警。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Deformation critical threshold estimation of Xiaowan ultrahigh arch dam with time-varying grey model

The structural behavior of the Xiaowan ultrahigh arch dam is primarily influenced by external loads and time-varying characteristics of dam concrete and foundation rock mass during long-term operation. According to overload testing with a geological model and the measured time series of installed perpendicular lines, the space and time evolution characteristics of the arch dam structure were analyzed, and its mechanical performance was evaluated. Subsequently, the deformation centroid of the deflective curve was suggested to indicate the magnitude and unique distribution rules for a typical dam section using the measured deformation values at multi-monitoring points. The ellipse equations of the critical ellipsoid for the centroid were derived from the historical measured time series. Hydrostatic and seasonal components were extracted from the measured deformation values with a traditional statistical model, and residuals were adopted as a grey component. A time-varying grey model was developed to accurately predict the evolution of the deformation behavior of the ultrahigh arch dam during future operation. In the developed model, constant coefficients were modified so as to be time-dependent functions, and the prediction accuracy was significantly improved through introduction of a forgetting factor. Finally, the critical threshold was estimated, and predicted ellipsoids were derived for the Xiaowan arch dam. The findings of this study can provide technical support for safety evaluation of the actual operation of ultrahigh arch dams and help to provide early warning of abnormal changes.

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来源期刊
CiteScore
6.60
自引率
5.00%
发文量
573
审稿时长
50 weeks
期刊介绍: Water Science and Engineering journal is an international, peer-reviewed research publication covering new concepts, theories, methods, and techniques related to water issues. The journal aims to publish research that helps advance the theoretical and practical understanding of water resources, aquatic environment, aquatic ecology, and water engineering, with emphases placed on the innovation and applicability of science and technology in large-scale hydropower project construction, large river and lake regulation, inter-basin water transfer, hydroelectric energy development, ecological restoration, the development of new materials, and sustainable utilization of water resources.
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