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Numerical study on the effect of fine coal accumulation in a coal beneficiation fluidized bed

机译:选煤流化床细煤堆积效果的数值研究

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One important phenomenon in coal beneficiation fluidized bed (CBFB) is the accumulation of fine coal particles in beneficiation due to poor screening efficiency and attrition of coal samples. The effect of fine coal accumulation is numerically studied in this work using a TFM-DEM hybrid model. The gas phase and medium solid phase are modeled by a two-fluid model (TFM), while the fine coal particles are modeled by the discrete element method (DEM). Particles with a diameter of 0.9 mm are used as the fine coal sample in the simulation. The gas-solid flow pattern and particle dynamics are investigated with different concentrations of fine coal particles accumulated in the bed. For model validation purpose, the mean bed density distributions are compared with the experimental reports from He et al. (2013). The results show that a critical particle concentration exists in the fine coal accumulation process in CBFB. When the fine coal particles are less than 11 wt% in the bed, the flow pattern of medium phase is little affected and the coal particles are well mixed in the bed. However, when the particle concentration exceeds this threshold, the uniformity of bed density distribution is destroyed and particle stratification occurs along the bed height according to their density difference. Flow dynamics of the dense bed and main forces acting on the fine coal particles are analyzed to explain the underlying mechanism. With a large number of particles accumulated in the bed, the mixing effect of medium flow is suppressed. Motion of the fine coal particles is less dependent on the bed disturbance, instead, the particle gravity plays a decisive role in the particle distribution and results in the particle segregation in the fine coal accumulation process. (C) 2015 Elsevier B.V. All rights reserved.
机译:选煤流化床(CBFB)的一个重要现象是由于筛分效率低和煤样品磨损导致选煤细颗粒的堆积。在这项工作中,使用TFM-DEM混合模型对细煤堆积的影响进行了数值研究。气相和中固相通过双流体模型(TFM)进行建模,而细煤颗粒通过离散元素方法(DEM)进行建模。在模拟中,将直径为0.9毫米的颗粒用作粉煤样品。用不同浓度的煤粉堆积在床层中研究了气固两相流态和颗粒动力学。为了模型验证的目的,将平均床密度分布与He等人的实验报告进行了比较。 (2013)。结果表明,CBFB的细煤堆积过程中存在临界颗粒浓度。当床中的细煤颗粒小于11wt%时,中相的流型几乎不受影响,并且煤颗粒在床中充分混合。然而,当颗粒浓度超过该阈值时,床密度分布的均匀性被破坏,并且根据它们的密度差沿床高度发生颗粒分层。分析了致密床的流动动力学和作用在细煤颗粒上的主力,以解释其潜在机理。由于大量颗粒堆积在床中,因此抑制了介质流的混合效果。细煤粉的运动对床层扰动的依赖性较小,相反,颗粒重力在颗粒分布中起决定性作用,并导致细煤聚集过程中的颗粒偏析。 (C)2015 Elsevier B.V.保留所有权利。

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