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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Measurement and simulation validation of DEM parameters of pellet, sinter and coke particles
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Measurement and simulation validation of DEM parameters of pellet, sinter and coke particles

机译:颗粒,烧结和焦粒子DEM参数的测量和仿真验证

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In numerical simulations of the blast furnace, the discrete element method (DEM) is a quite novel method. The accuracy of physical parameters of the method is a key issue for the reliability of the results. In this study, we first measured the parameters describing the interaction between pellets, sinter and coke, as well as between these three materials and a steel plate. The experimentally determined parameters include the Young's modulus, Shear modulus and Poisson's ratio, particle density, coefficient of restitution, as well as coefficients of static and rolling friction. The coefficients of rolling friction of non-spherical particles were obtained by comparing the repose angle of bulk materials in experiment and simulation. After these calibration steps, the DEM parameters were validated by a comparison of free surfaces of the conical piles formed in simulations and experiments. The experimental and calculated results show good agreement, which demonstrates that the measured DEM parameters are of sufficient accuracy to be used in simulation of burden distribution and descent in the blast furnace. (C) 2020 Published by Elsevier B.V.
机译:在高炉的数值模拟中,离散元素法(DEM)是一种相当新的方法。该方法的物理参数的准确性是结果可靠性的关键问题。在这项研究中,我们首先测量描述颗粒,烧结和焦炭之间相互作用的参数,以及这三种材料和钢板之间。实验确定的参数包括杨氏模量,剪切模量和泊松比,粒子密度,恢复系数,以及静态和滚动摩擦系数。通过比较实验和模拟中的散装材料的休置角度来获得非球形颗粒的滚动摩擦系数。在这些校准步骤之后,通过在模拟和实验中形成的锥形桩的自由表面比较验证DEM参数。实验性和计算结果表明,良好的一致性,表明测量的DEM参数具有足够的准确性,以便在高炉中的负荷分布和下降的模拟中使用。 (c)2020由elsevier b.v发布。

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