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Filling Capacity Evaluation of Self-Compacting Concrete in Rock-Filled Concrete

机译:堆石混凝土中自密实混凝土的填充量评估

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摘要

The good filling performance of self-compacting concrete (SCC) to pre-placed assembly of rocks is essential for quality of rock-filled concrete (RFC). In this study, a theoretical model is proposed to evaluate the filling capacity of SCC in porous media that is simplified to approximate the assembly of rocks. Numerical simulation of SCC flow in the porous media is carried out based on the computational fluid dynamics. The effects of yield stress of SCC and size and shape of grains in the porous media on the filling capacity of SCC are considered. The inclination of the free surface of the distribution of SCC at flow stoppage is defined to evaluate the filling capacity of SCC in the porous media. According to the theoretical model, the inclination is directly proportional to the yield stress of the SCC and the blocking effect of grains, while inversely proportional to the grain size. The numerical simulation provides consistent results with the theoretical model. The results suggest the use of rounded large rocks and SCC with low yield stress to ensure good quality of RFC.
机译:自密实混凝土(SCC)对岩石的预放置组装的良好填充性能对于填石混凝土(RFC)的质量至关重要。在这项研究中,提出了一个理论模型来评估多孔介质中SCC的填充能力,该模型被简化为近似岩石的组装。基于计算流体动力学进行了多孔介质中SCC流动的数值模拟。考虑了SCC的屈服应力和多孔介质中晶粒的尺寸和形状对SCC填充能力的影响。定义了在停止流动时SCC分布的自由表面的倾斜度,以评估SCC在多孔介质中的填充能力。根据理论模型,倾角与SCC的屈服应力和晶粒的结块效应成正比,而与晶粒尺寸成反比。数值模拟提供了与理论模型一致的结果。结果表明,使用圆形大岩石和低屈服应力的SCC可确保RFC的良好质量。

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