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Granular temperature and rotational characteristic analysis of a gas-solid bubbling fluidized bed under different gravities using discrete hard sphere model

机译:离散硬球模型分析不同重力下气固鼓泡流化床的颗粒温度和旋转特性

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摘要

A gas-solid bubbling fluidized bed was analyzed by using a discrete hard sphere particle model (DPM). Simulation results were validated by matching them to the results of the previous study. Particle translational and rotational characteristics were investigated in terms of gravities to find out their influences on the particle behaviors. The gravity did not significantly affect the particle macro-scale characteristics, such as particle translational velocity and rotational velocity, but acted an important role in particle micro-scale characteristics like granular temperatures. Particularly, the change of gravity affected the change of the bubble behavior and the particles' pulsation movement, which could lead to the transformation of the overall fluidized state. (C) 2014 Elsevier B.V. All rights reserved.
机译:通过使用离散硬球颗粒模型(DPM)对气固鼓泡流化床进行了分析。通过将仿真结果与先前研究的结果进行匹配来验证仿真结果。根据重力研究了粒子的平移和旋转特性,以了解它们对粒子行为的影响。重力并没有显着影响粒子的宏观尺度特性,例如粒子的平移速度和旋转速度,但是在粒子的微观尺度特性(如颗粒温度)中起着重要的作用。特别地,重力的变化影响了气泡行为的变化和颗粒的脉动运动,这可能导致整体流化状态的转变。 (C)2014 Elsevier B.V.保留所有权利。

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