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Evaluation of Reinforcement and Analysis of Stability of a High-Arch Dam Based on Geomechanical Model Testing

机译:基于土工力学模型试验的高拱坝加固评估与稳定性分析

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摘要

Reinforcement measures are often used in high-arch dams with complicated geological foundations. The geomechanical model test is an effective method to study the global stability of arch dams and to evaluate the reinforcement effects of foundation treatments. The block masonry technique was developed to simulate the jointed rock mass, tectonic discontinuities, and reinforcement measures. A tailor-made low-strength binder and small blocks were developed to simulate the strength and deformation of the jointed rock mass and discontinuities, respectively. We applied this technique to geomechanical model tests of the Dagangshan arch dam with and without foundation reinforcements. A rupture test was conducted, and the stress and displacement distribution of the dam and abutments were recorded; the failure mechanisms and processes were explored. The reinforcement effects of the foundation treatment were evaluated by comparing the test results of the models with and without foundation reinforcements. Our analysis indicates that foundation reinforcements can improve the stress distribution, decrease deformation, prevent slides, reduce fault movement, and improve the global stability of high-arch dams.
机译:加固措施通常用于具有复杂地质基础的高拱坝。地质力学模型试验是研究拱坝整体稳定性并评估地基处理加固效果的有效方法。开发了砌块技术来模拟节理岩体,构造不连续性和加固措施。量身定制的低强度粘结剂和小块分别用于模拟节理岩体的强度和变形以及不连续性。我们将该技术应用于有无基础加固的大港山拱坝的地质力学模型试验。进行断裂试验,并记录坝和基台的应力和位移分布。探索了失效机理和过程。通过比较带有和不带有基础加固的模型的测试结果,评估了基础处理的加固效果。我们的分析表明,地基加固可以改善应力分布,减少变形,防止滑动,减少断层运动并提高高拱坝的整体稳定性。

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