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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 >Effect of particle-particle interaction on the bed pressure drop and bubble flow by computational particle-fluid dynamics simulation of bubbling fluidized beds with shroud nozzle
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Effect of particle-particle interaction on the bed pressure drop and bubble flow by computational particle-fluid dynamics simulation of bubbling fluidized beds with shroud nozzle

机译:带有罩式喷嘴的鼓泡流化床的颗粒-流体动力学模拟,颗粒间相互作用对床压降和气泡流动的影响

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Computational particle-fluid dynamics (CPFD) simulations were carried out to determine the bed pressure drop and bubble behavior in bubbling fluidized beds produced using a shroud nozzle distributor. The fluidized bed had an internal diameter of 03 m and height of 2.4 m and was modeled using Barracuda, commercial CPFD software. The bed materials consisted of metal-grade silicon particles with d(p), rho(p), and U-mf of 150 mu m, 2330 kg/m(3), and 0.02 m/s, respectively. The total bed inventory and the static bed height were 75 kg and 0.8 m, respectively. Air was used as the fluidizing gas at room temperature and atmospheric pressure and was uniformly supplied at the inlet boundary below the distributor. The superficial gas velocity was controlled in the range between 0.07 and 0.17m/s, and the restitution coefficient of the collision model and the particle normal stress parameter, which affected the particle particle interaction, were adjusted to obtain accurate simulation data. The results of each simulation were validated by comparing the pressure drop profile to that obtained through experiments under the same conditions. The values predicted for the bed pressure drop and the bubble volume fraction changed according to the restitution coefficient in the collision model and the particle normal stress. At P-s = 5, the bed pressure drop and the bubble flow characteristics were similar to those obtained from the experimental data. (C) 2015 Elsevier B.V. All rights reserved.
机译:进行了计算粒子流体动力学(CPFD)模拟,以确定使用护罩喷嘴分配器生产的鼓泡流化床中的床压降和气泡行为。流化床的内径为03 m,高度为2.4 m,并使用Barracuda(商业CPFD软件)进行建模。床层材料由d(p),rho(p)和U-mf分别为150μm,2330 kg / m(3)和0.02 m / s的金属级硅颗粒组成。总床位和静态床高分别为75 kg和0.8 m。在室温和大气压下将空气用作流化气体,并在分配器下方的入口边界处均匀地供应空气。将表观气体速度控制在0.07至0.17m / s的范围内,并调整碰撞模型的恢复系数和影响颗粒间相互作用的颗粒正应力参数,以获得准确的模拟数据。通过将压降曲​​线与在相同条件下通过实验获得的压降曲线进行比较,可以验证每个模拟的结果。床压降和气泡体积分数的预测值根据碰撞模型中的恢复系数和颗粒法向应力而变化。在Ps = 5时,床压降和气泡流动特性与实验数据相似。 (C)2015 Elsevier B.V.保留所有权利。

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