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首页> 外文期刊>Annual review of chemical and biomolecular engineering >Possibilities and Limits of Computational Fluid Dynamics–Discrete Element Method Simulations in Process Engineering: A Review of Recent Advancements and Future Trends
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Possibilities and Limits of Computational Fluid Dynamics–Discrete Element Method Simulations in Process Engineering: A Review of Recent Advancements and Future Trends

机译:工艺工程中计算流体动力学 - 离散元素方法模拟的可能性和限制:近期进步与未来趋势综述

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摘要

Fluid–solid systems play a major role in a wide variety of industries, from pharmaceutical and consumer goods to chemical plants and energy generation. Along with this variety of fields comes a diversity in apparatuses and applications, most prominently fluidized and spouted beds, granulators and mixers, pneumatic conveying, drying, agglomeration, coating, and combustion. The most promising approach for modeling the flow in these systems is the CFD-DEM method, coupling computational fluid dynamics (CFD) for the fluid phase and the discrete element method (DEM) for the particles. This article reviews the progress in modeling particle–fluid flows with the CFD-DEM method. A brief overview of the basic method as well as methodical extensions of it are given. Recent applications of this simulation approach to separation and classification units, fluidized beds for both particle formation and energy conversion, comminution units, filtration, and bioreactors are reviewed. Future trends are identified and discussed regarding their viability.
机译:流体固体系统在各种行业中起主要作用,从制药和消费品到化学植物和能量产生。随着这种各种领域,在设备和应用中具有多样性,最突出的流化和喷出的床,造粒机和搅拌机,气动输送,干燥,聚集,涂层和燃烧。用于建模这些系统中的流动的最有希望的方法是CFD-DEM方法,用于用于颗粒的流体相的计算流体动力学(CFD)和离散元件方法(DEM)。本文综述了用CFD-DEM法建模粒子流体流动的进展。给出了基本方法的简要概述以及它的方法扩展。综述了该模拟方法对分离和分类单位的分离和分类单元的应用,流化床,粉碎单元,过滤和生物反应器。关于他们的可行性,确定并讨论了未来的趋势。

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