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Extension of cluster-structure dependent drag model to simulation of riser with Geldart B particles

机译:扩展与团簇相关的阻力模型到用Geldart B颗粒模拟立管

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To describe the impact of clusters as the meso-scale structure, a cluster-structure-dependent (CSD) drag model is proposed based on stability criterion of the minimum energy dissipation consumed by drag, where the heterogeneous flow structure is characterized by the gas-rich dilute phase and the particle rich dense phase. Under the framework of the two-fluid model, the CSD drag model is employed for the investigation of the hydrodynamics in risers with Geldart B particles. By comparisons with experimental results, the CSD drag model shows reasonable predictions. Local structural parameters including dense phase fraction, local velocities in dense and dilute phases are obtained. Meanwhile, the profiles of energy consumption by drag with local gas volume fraction are analyzed, which reveals that the direction of particles will significantly alter the distribution of energy consumption by the heterogeneous drag. (C) 2015 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:为了描述簇对中尺度结构的影响,基于阻力所消耗的最小能量耗散的稳定性判据,提出了一种依赖于簇结构的(CSD)阻力模型,其中非均质流动结构的特征在于气体富稀相和颗粒富密相。在双流体模型的框架下,采用CSD阻力模型来研究带有Geldart B颗粒的立管中的流体动力学。通过与实验结果的比较,CSD阻力模型显示出合理的预测。获得了局部结构参数,包括密相分数,密相和稀相中的局部速度。同时,分析了阻力与局部气体体积分数的关系,表明颗粒的方向将显着改变异质阻力对能量分布的影响。 (C)2015年日本粉末技术学会。由Elsevier B.V.和日本粉末技术学会出版。版权所有。

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