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CFD-DEM investigation of the fluidization of binary mixtures containing rod-like particles and spherical particles in a fluidized bed

机译:CFD-DEM研究流化床中含有棒状颗粒的二元混合物流化物化和球形颗粒

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In the energy conversion process, the inert bed material such as sand with spherical shape is usually added to the fluidized bed for the proper fluidization of the non-spherical biomass particles. Understanding fluidization of the binary mixtures containing the biomass and the bed material is therefore significant for better utilization of the biomass. To this end, CFD-DEM model is used to simulate the fluidization of the binary mixtures containing the rod-like particles that represent the light and large biomass particles and the spherical particles that represent the dense and small bed material, in which all particles are described by super-ellipsoid model. Five granular systems with different volume fractions of the rod-like particles but the same particle volume are simulated in this paper. The simulation results demonstrate that the minimum fluidization velocity would increase with the volume fraction of the rod-like particles. The addition of the spherical particles is beneficial to the fluidization of the rod-like particles. The mixing rate in binary granular system and the distribution of the coordinate number would be affected by the gas superficial velocity and the volume fraction of the rod-like particles. For the orientation of the rod-like partides, its distribution in binary granular system is different from that in monodisperse rod-like particle system. But whether in binary granular system or monodisperse rod-like particle system, there is apparent wall effect on the particle orientation. (C) 2018 Elsevier B.V. All rights reserved.
机译:在能量转换过程中,诸如球形的惰性床材料通常被添加到流化床中,以适当流化非球形生物质颗粒。因此,了解含有生物质和床材料的二元混合物的流化,因此可以更好地利用生物质。为此,CFD-DEM模型用于模拟含有代表光和大生物质颗粒的棒状颗粒的二元混合物的流化和代表致密和小床材料的球形颗粒,其中所有颗粒都是如此超级椭圆模型描述。在本文中模拟了具有棒状颗粒的不同体积分数的五种颗粒状系统,但在本文中模拟了相同的颗粒体积。模拟结果表明,最小流化速度会随着棒状颗粒的体积分数而增加。添加球形颗粒是有益于棒状颗粒的流化。二元粒状系统中的混合速率和坐标数的分布将受到棒状颗粒的气体表面速度和体积分数的影响。对于棒状偏移的方向,其在二元粒度系统中的分布与单分散杆状颗粒系统中的分布不同。但无论是在二元粒状系统还是单分散杆状颗粒系统中,都对颗粒取向有表观壁效应。 (c)2018 Elsevier B.v.保留所有权利。

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