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Particle scale modelling of gas-solid flow in a fluid bed reactor: comparison with the experiments

机译:流化床反应器中气固流动粒度建模:与实验相比

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This paper describes a Combined Continuum and Discrete Model (CCDM) capable of simulating gas-solid two-phase flow at individual particle level, with special reference to its validation. Both numerical and physical experiments were conducted under comparable conditions, with the later involving the use of a high-speed digital video camera. The results show that the model predictions from the first principles are in good agreement with the experiments. The complex solid flow patterns caused by the lateral gas blasting and associated to either raceway or fluidization phenomena were captured well by the model. The capability of the proposed CCDM is further highlighted by its depicted microdynamic information about the spatial distributions of particle-particle and fluid-particle interactions, which is key to elucidating the mechanisms governing the gas-solid two-phase flow.
机译:本文介绍了能够在各个粒度下模拟气体固体两相流的组合的连续体和离散模型(CCDM),并特别参考其验证。在可比条件下进行数值和物理实验,随后涉及使用高速数字摄像机。结果表明,第一个原则的模型预测与实验吻合良好。由模型良好地捕获由横向气体喷砂和与滚道或流化现象相关的复杂固体流动模式。所提出的CCDM的能力通过其描绘了关于颗粒颗粒和流体颗粒相互作用的空间分布的微大学信息,这是阐明控制气体固体两相流量的机制的关键。

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