首页> 外文期刊>Advances in civil engineering >Shear Stress Analysis and Crack Prevention Measures for a Concrete-Face Rockfill Dam, Advanced Construction of a First-Stage Face Slab, and a First-Stage Face Slab in Advanced Reservoir Water Storage
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Shear Stress Analysis and Crack Prevention Measures for a Concrete-Face Rockfill Dam, Advanced Construction of a First-Stage Face Slab, and a First-Stage Face Slab in Advanced Reservoir Water Storage

机译:混凝土面板堆石坝的剪应力分析及防裂措施,高级水库蓄水初期阶段面板和初期阶段面板的施工

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Due to the demand in flood season for power generation, the first-stage face slab of a high concrete-face rockfill dam often must be constructed ahead of schedule, and advanced water storage is needed for the reservoir. Since the dam-body filling has not yet been completed at this point, the internal stress of the first-stage face slab is more complicated than that of normal construction. Taking Buxi Power Station as an example, the first-stage face slab temporary construction seam showed large areas of shear stress damage during the rise in reservoir water levels during the second segment of the second construction stage. The concrete-face slab showed large-piece brittle bulging, and the steel rebar was exposed and developed contortional deformation. Based on the monitoring data for Buxi Power Station along with the first-stage fracture characteristics of Shuibuya concrete face, this paper applied a numerical analysis to conduct research on the causes of fracture mechanics. The results indicate that the cracks occurred on the face slab during the second segment of second-stage water storage primarily due to the advanced concrete pouring of the first-stage face slab; during the first stage of reservoir water storage, the internal stress of the first-stage face slab was not reduced or eliminated prior to second-stage face slab pouring. Thus, with the rise in the reservoir water level, the shear stress increased continuously, eventually leading to partial large-scale shear stress failure of the first-stage face slab. The research results provide important references for the design and construction of concrete-face rockfill dams.
机译:由于汛期对发电的需求,高混凝土面板堆石坝的第一阶段面板通常必须提前建造,并且水库需要高级蓄水。由于此时坝体的填充尚未完成,因此第一阶段面板的内部应力比正常施工更为复杂。以布溪电厂为例,在第二阶段第二阶段,水库水位上升期间,第一阶段面板临时施工缝显示出较大的剪切应力破坏区域。混凝土面板显示出大块的脆性凸起,钢筋暴露在外并产生扭曲变形。基于布溪电站的监测数据,结合水布ya混凝土工作面的一期断裂特征,运用数值分析方法对断裂机理进行了研究。结果表明,在第二阶段蓄水的第二阶段,面板上出现了裂纹,这主要是由于第一阶段面板的高级混凝土浇筑所致。在水库蓄水的第一阶段,在第二阶段面板浇筑之前,第一阶段面板的内应力没有减少或消除。因此,随着储层水位的升高,剪应力不断增加,最终导致第一阶段面板的局部大规模剪应力破坏。研究成果为混凝土面板堆石坝的设计和施工提供了重要的参考。

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