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Deformation Monitoring of Geomechanical Model Test and Its Application in Overall Stability Analysis of a High Arch Dam

机译:地质力学模型试验的变形监测及其在高拱坝整体稳定性分析中的应用

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Geomechanical model testing is an important method for studying the overall stability of high arch dams. The main task of a geomechanical model test is deformation monitoring. Currently, many types of deformation instruments are used for deformation monitoring of dam models, which provide valuable information on the deformation characteristics of the prototype dams. However, further investigation is required for assessing the overall stability of high arch dams through analyzing deformation monitoring data. First, a relationship for assessing the stability of dams is established based on the comprehensive model test method. Second, a stability evaluation system is presented based on the deformation monitoring data, together with the relationships between the deformation and overloading coefficient. Finally, the comprehensive model test method is applied to study the overall stability of the Jinping-I high arch dam. A three-dimensional destructive test of the geomechanical model dam is conducted under reinforced foundation conditions. The deformation characteristics and failure mechanisms of the dam abutments and foundation were investigated. The test results indicate that the stability safety factors of the dam abutments and foundation range from 5.2 to 6.0. These research results provide an important scientific insight into the design, construction, and operation stages of this project.
机译:地质力学模型测试是研究高拱坝整体稳定性的重要方法。地质力学模型测试的主要任务是变形监测。目前,许多类型的变形仪器用于大坝型号的变形监测,这提供了有关原型坝的变形特性的有价值的信息。但是,通过分析变形监测数据,需要进一步调查来评估高拱坝的整体稳定性。首先,基于综合模型测试方法建立了评估水坝稳定性的关系。其次,基于变形监测数据呈现稳定性评估系统,以及变形和过载系数之间的关系。最后,综合模型试验方法应用于研究金平 - I高拱坝的整体稳定性。在增强基础条件下进行了地质力学模型大坝的三维破坏性测试。研究了坝基和基础的变形特性和故障机制。测试结果表明,坝基的稳定性安全因子和基础范围为5.2至6.0。这些研究结果对该项目的设计,施工和操作阶段提供了重要的科学洞察力。

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