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Numerical Study on Concrete Pumping Behavior via Local Flow Simulation with Discrete Element Method

机译:基于离散元局部流模拟的混凝土泵送特性数值研究

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摘要

The use of self-consolidating concrete and advanced pumping system enables efficient construction of super high-rise buildings; however, risks such as clogging or even bursting of pipeline still exist. To better understand the fresh concrete pumping mechanisms in detail, the discrete element method is employed in this paper for the numerical simulation of local pumping problems. By modeling the coarse aggregates as rigid clumps and appropriately defining the contact models, the concrete flow in representative pipeline units is well revealed. Important factors related to the pipe geometry, aggregate geometry and pumping condition were considered during a series of parametric studies. Based on the simulation results, their impact on the local pumping performance is summarized. The present work demonstrates that the discrete element simulation offers a useful way to evaluate the influence of various parameters on the pumpability of fresh concrete.
机译:使用自固结混凝土和先进的抽水系统,可以高效地建造超高层建筑;但是,仍然存在诸如堵塞甚至管道破裂的风险。为了更好地了解新拌混凝土的泵送机理,本文采用离散元法对局部泵送问题进行了数值模拟。通过将粗骨料建模为刚性团块并适当定义接触模型,可以很好地揭示具有代表性的管道单元中的混凝土流动。在一系列参数研究中,考虑了与管道几何形状,骨料几何形状和泵送条件有关的重要因素。根据仿真结果,总结了它们对局部泵送性能的影响。目前的工作表明,离散元模拟提供了一种有用的方法来评估各种参数对新鲜混凝土的可泵送性的影响。

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