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Study on the nonlinear deformation and failure mechanism of a high arch dam and foundation based on geomechanical model test

机译:基于土工力学模型试验的高拱坝和基础非线性变形破坏机理研究

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摘要

Mengdigou double-curvature arch dam, located in the southwest of China, is a 200-meter-high dam with complex geological conditions. Failure analysis of the arch dam coupled with the foundation is important for evaluation of the stability. In this regard, a geomechanical model test was carried out. The data pertaining to displacements, stresses, and acoustic emissions, and the entire process of the failure occurring during overloading were obtained. During the overloading process, crack initiates in the upstream dam heel. Then, a crack appears downstream at the dam toe as the load increases. After the damage of the dam toe, cracks occur in the faults around the abutment. Meanwhile, cracks develop rapidly in the arch dam. Eventually, the dam-foundation system loses its ultimate bearing capacity and fails. The results of the model test were compared with those of numerical calculation. Then, the nonlinear deformation and failure mechanism was analyzed. Finally, the safety factor of cracking of the arch dam, the safety factor of the initial nonlinear deformation, and the safety factor of the ultimate bearing capacity were obtained, which reveal that the design of the arch dam is reasonable.
机译:孟地沟双曲拱坝位于中国西南部,是一座200米高的大坝,地质条件复杂。拱坝和基础的破坏分析对于评估稳定性非常重要。在这方面,进行了地质力学模型测试。获得了与位移,应力和声发射有关的数据,以及在过载期间发生故障的整个过程。在超载过程中,裂缝在上游坝坝脚跟处引发。然后,随着载荷的增加,在坝趾的下游出现裂缝。坝脚趾损坏后,在基台周围的断层中会出现裂缝。同时,拱坝裂缝迅速发展。最终,大坝基础系统失去了其最终的承载能力而失效。将模型测试的结果与数值计算的结果进行了比较。然后,分析了非线性变形和破坏机理。最后,获得了拱坝开裂的安全系数,初始非线性变形的安全系数和极限承载力的安全系数,这表明拱坝的设计是合理的。

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