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Simulation of concrete flow in V-funnel test and the proper range of viscosity and yield stress for SCC

机译:V型漏斗试验中混凝土流动的模拟以及SCC的适当粘度和屈服应力范围

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The present paper highlights the flow simulation of self consolidating concrete (SCC) in V-funnel test that is used to determine the concrete filling ability and its resistance against segregation. Simulations were performed using a two-dimensional smoothed particle hydrodynamic (SPH) method to determine the discharge time where SCC was considered as a homogeneous Bingham fluid. The numerical predictions are lower than experimental data because of the assumptions of two-dimensional and homogeneous flow. Having the SPH method employed, SCCs with different viscosities and yield stresses were simulated to compare the discharge time with the suggested criteria in EFNARC (2002) and (2005) guidelines. Based on simulations results, the appropriate range of viscosities and yield stresses as well as a relation between rheological properties and discharge time for SCC taking into account EFNARC (2002) and (2005) guidelines are suggested. Using the suggested relations, one can assess the proper SCC filling ability without conducting the V-funnel test.
机译:本文重点介绍了V型漏斗试验中自密实混凝土(SCC)的流动模拟,该试验用于确定混凝土的填充能力及其抗偏析性。使用二维平滑粒子流体动力学(SPH)方法进行模拟,以确定将SCC视为均质宾厄姆流体的排放时间。由于二维和均质流动的假设,数值预测低于实验数据。采用SPH方法,模拟了具有不同粘度和屈服应力的SCC,以比较放电时间与EFNARC(2002)和(2005)指南中建议的标准。根据模拟结果,建议考虑到EFNARC(2002)和(2005)的指导方针,确定SCC的粘度和屈服应力的适当范围以及流变学性质和放电时间之间的关系。使用建议的关系,无需进行V型漏斗测试即可评估适当的SCC填充能力。

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