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Multi-scale analysis on particle-phase stresses of coarse particles in bubbling fluidized beds

机译:鼓泡流化床中粗颗粒颗粒相应力的多尺度分析

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Despite the restless efforts devoted to the hydrodynamics of bubbling fluidized beds, the particle-phase stress, which is one of the critical issues in modeling bubbling fluidized beds by the Eulerian approach, is not well understood. To address this problem, a mathematical model is developed to describe the kinetic properties of coarse particles, such as granular temperature and granular pressure, based on a multi-scale analysis of particle velocity fluctuation. Contributions from both high-frequency particle-scale fluctuations and low-frequency bubble-induced fluctuations are considered. It is proven to agree well with experimental data available up to date from bubbling fluidized beds for Geldart B and D particles. (c) 2005 Elsevier Ltd. All rights reserved.
机译:尽管对鼓泡流化床的流体力学进行了不懈的努力,但对于通过欧拉方法对鼓泡流化床进行建模的关键问题之一-颗粒相应力,却仍未得到很好的理解。为了解决这个问题,基于颗粒速度波动的多尺度分析,开发了一个数学模型来描述粗颗粒的动力学特性,例如颗粒温度和颗粒压力。考虑了来自高频粒子尺度波动和低频气泡引起的波动的贡献。已证明与Geldart B和D颗粒鼓泡流化床的最新可用实验数据非常吻合。 (c)2005 Elsevier Ltd.保留所有权利。

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