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Geomechanical model test for stability analysis of high arch dam based on small blocks masonry technique

机译:基于小砌块技术的高拱坝稳定分析的地质力学模型试验。

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摘要

Rock mass deformation and strength property simulation plays a key role in the rupture tests of arch dam geomechanical model. Subject to the limit of geometry scale, usually the simulation of tectonic discontinuities, such as faults, disturbed belts, crush belts and weak interlayer were ignored as safety buffer, which may yield overstated safety factors. In this paper, small block masonry technique and low strength binder invented make the simultaneous simulation of the rock mass and tectonic discontinuities available, which is more coincident with real engineering conditions. Based on the material test of blocks and binder, the small blocks masonry technique has been successfully applied in the rupture test of Xiluodu arch dam. With the assistance of high-accuracy monitoring and measuring system, the stress (strain) and displacement distribution of the dam, abutments and rock foundations are obtained. By analyzing these monitoring results, the failure process, mode and mechanism of the dam body and abutments are derived for further identification of weakness. At last, the comparative analysis with other arch dam geomechanical rupture test results yields the evaluation of the dam's global stability and necessary reinforcement measures.
机译:岩体变形和强度特性模拟在拱坝地质力学模型的破裂试验中起着关键作用。受几何尺度的限制,通常将诸如断层,扰动带,破碎带和弱夹层之类的构造不连续性模拟作为安全缓冲,这可能会产生过高的安全系数。在本文中,发明的小砌块技术和低强度结合剂使得可以同时模拟岩体和构造不连续性,这与实际工程条件更加吻合。在砌块和粘结剂的材料试验的基础上,小砌块砌筑技术已成功应用于溪洛渡拱坝的破裂试验。借助高精度监测和测量系统,可以获得大坝,桥台和岩石基础的应力(应变)和位移分布。通过分析这些监测结果,得出坝体和桥台的破坏过程,模式和机理,以进一步识别弱点。最后,与其他拱坝岩土力学断裂试验结果进行比较分析,得出了对大坝整体稳定性和必要的加固措施的评估。

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