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Development of an empirical wall-friction model for 2D simulations of pseudo-2D bubbling fluidized beds

机译:拟2D鼓泡流化床二维模拟经验壁摩擦模型的开发

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Pseudo-2D fluidized beds have been crucial for the understanding of the dynamics of gas-particle systems. In these systems the distance between the front and back walls is narrow, which restricts and creates a resistance to the solids motion, leading to a different flow behaviour compared to fully 3D systems. This interaction of the particle motion with the walls can be significant and should not be neglected in numerical simulations. The present work develops a new model to easily account for the friction effect between the walls and the particles in a pseudo-2D bed. The model is based on experimental results combined with simplifications of the shear force on a wall provided by the kinetic theory of granular flows. The dependence on the particle diameter and bed thickness is directly introduced in the model through the use of a straightforward expression that is easy to code and does not lead to numerical divergence. To test the model two beds of different thickness were simulated, and the resulting time-averaged solids concentration and velocity as well as bubble properties were compared with experiments. It is shown that the numerical results with the new wall-friction model improve the prediction of the standard 2D-simulations. (C) 2016 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:伪2D流化床对于理解气体颗粒系统的动力学至关重要。在这些系统中,前壁和后壁之间的距离很窄,这限制并产生了对固体运动的阻力,与完全3D系统相比,导致了不同的流动行为。粒子运动与壁的这种相互作用可能是重要的,并且在数值模拟中不应忽略。本工作开发了一种新模型,可以轻松解决伪2D床中壁与颗粒之间的摩擦效应。该模型基于实验结果,并结合了由颗粒流动动力学理论提供的壁上剪切力的简化。通过使用易于编码且不会导致数值差异的简单表达式,直接将对颗粒直径和床层厚度的依赖性引入模型中。为了测试该模型,模拟了两张不同厚度的床,并将所得的时间平均固体浓度和速度以及气泡性质与实验进行了比较。结果表明,新的壁摩擦模型的数值结果改善了标准2D模拟的预测。 (C)2016日本粉末技术学会。由Elsevier B.V.和日本粉末技术学会出版。版权所有。

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