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Study on Deformation and Control Measures of Columnar Jointed Basalt for Baihetan Super-High Arch Dam Foundation

机译:白初超高拱坝基础柱状关节玄武岩变形及控制措施研究

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摘要

The Baihetan super-high arch dam is constructed under complicated geological conditions, including large-scale columnar jointed basalt with closely spaced joints and multiple interlayer and intralayer shear belts at the lower part of dam base. Due to large excavation depth and scale at the dam base, unloading deformation and relaxation of columnar jointed basalt and shear belts were revealed by field investigation, in situ testing, monitoring, and numerical simulations. It was found that the relaxation depth of columnar jointed basalt was related to geostress, rock mass quality, and gently dipping shear belts. The time effect of unloading relaxation is also obvious in the columnar jointed basalt. In terms of unloading deformation control, comprehensive reinforcement measures and proper construction sequence at the dam base were proposed, including reservation of a 5-m-thick rock mass layer as the protective layer, consolidation grouting on the protective layer, preinstallation of mortar anchors through consolidation grouting hole, excavation of protective layers with controlled blasting in small benches, timely anchorage by prestressed cables upon exposure of foundation surface, and additional consolidation grouting for shallow foundation rock mass under concrete cover weight. With the comprehensive reinforcement measures at the dam base, the relaxation depth of columnar jointed basalt was small and shear deformation of shear belts was effectively controlled. Thus, the proposed reinforcement measures were proven to be proper and effective, which could meet the requirements of dam base and provide some reference for similar hydropower projects.
机译:Baihetan Super-High Arch Dam在复杂的地质条件下构建,包括大型柱状连接玄武岩,在坝基的下部具有紧密间隔的关节和多个中间层和腔内剪切带。由于坝基的大型挖掘深度和尺度,柱状连接玄武岩和剪切带的卸载变形和放松是通过现场调查,原位测试,监测和数值模拟的。结果发现,柱状连接玄武岩的松弛深度与石英,岩石质量和轻轻浸渍剪切带有关。卸载松弛的时间效果在柱状连接玄武岩中也显而易见。在卸载变形控制方面,提出了坝基的综合加固措施和适当的结构序列,包括预留5米厚的岩石质量层作为保护层,在保护层上固结灌浆,穿过砂浆锚固的预装整合灌浆孔,小长凳上采用控制爆破的保护层的挖掘,预应力电缆在磨实覆盖覆盖重量下的浅层基础岩体的额外整合灌浆。随着坝基的综合加固措施,柱状连接玄武岩的弛豫深度小而且有效控制剪切带的剪切变形。因此,拟议的强化措施被证明是适当的,有效的,这可以满足大坝基地的要求,并为类似水电项目提供一些参考。

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