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Exploration on Damage Mechanism and Equivalent Damage Model of High Arch Dams under Earthquakes

机译:地震作用下高拱坝的破坏机理及等效破坏模型探讨

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摘要

Damage identification technology of high arch dams has been well developed under strong earthquakes. However, the failure mechanism of high arch dams at different locations remains unclear. For this purpose, a series of deterministic dynamic analyses for a 3D 289-m-high arch dam based on concrete damaged plasticity constitutive model are performed. The failure mechanism at different locations of high arch dams under earthquakes is studied systematically. According to the sensitivity of different indicators to different damaged positions, an effective sensor placement scheme is proposed to assess the seismic reliability in practical engineering. Furthermore, a new effective equivalent damage model based on prior information is proposed, which can improve the efficiency of damage identification, as well as solving the problem that the real damage is concealed by homogenizing the damage in a pre-set region. The results provide suggestions and theoretical basis for sensor placement in actual monitoring of high arch dams; and the equivalent damage model provides a new solution to balance the efficiency and accuracy of damage identification.
机译:在强烈地震下,高拱坝的损伤识别技术已经得到了很好的发展。但是,高拱坝在不同位置的破坏机理仍不清楚。为此,基于混凝土损坏的可塑性本构模型对3D 289米高的拱坝进行了一系列确定性的动力分析。系统地研究了高拱坝在地震作用下不同部位的破坏机理。根据不同指标对不同破损位置的敏感性,提出了一种有效的传感器布置方案,以评估实际工程中的地震可靠性。此外,提出了一种基于先验信息的有效等效损伤模型,该模型可以提高损伤识别的效率,并且可以通过在预定区域内对损伤进行均匀化来解决掩盖真实损伤的问题。研究结果为高拱坝实际监测中传感器的布置提供了建议和理论依据。等效损伤模型为平衡损伤识别的效率和准确性提供了一种新的解决方案。

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