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CFD simulation of dense particulate reaction system: Approaches, recent advances and applications

机译:致密颗粒反应系统的CFD模拟:方法,最新进展和应用

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摘要

Dense particulate reaction system (DPRS) is quite common in many engineering fields such as energy conversion, petro-chemical processing, mineral processing, chemical engineering and pharmaceutical manufacturing. These kinds of processes are extremely complex involving both physical changes and chemical changes. Understanding the fundamentals governing the gas-particle flow and coupled heat and mass transfer is of paramount importance to the design, control and optimization of DPRS of various types. Computational fluid dynamics (CFD) has been recognized as a useful tool to achieve this goal. This paper provides a review of the CFD work in the simulation. The CFD approaches are categorized into Eulerian-Eulerian and Eulerian-Lagrangian ones. Detailed description and coupling scheme of gas-particle flow and chemical reaction of the two approaches are presented separately. An updated survey of published CFD studies is summarized. The developed models are shown to primarily involve Eulerian multi-fluid model, CFD-DEM (discrete element method) model and/or MP-PIC (multiphase particle-in-cell) model. Their respective advantages and limitations in application are analyzed. Finally, challenges and needs for future research are discussed. (C) 2015 Elsevier Ltd. All rights reserved.
机译:致密颗粒反应系统(DPRS)在许多工程领域中非常普遍,例如能量转换,石油化学加工,矿物加工,化学工程和制药业。这些类型的过程非常复杂,涉及物理变化和化学变化。理解控制气体颗粒流动以及热与质量耦合的基本原理对于各种类型的DPRS的设计,控制和优化至关重要。计算流体力学(CFD)被认为是实现这一目标的有用工具。本文概述了CFD在模拟中的工作。 CFD方法分为欧拉-欧拉和欧拉-拉格朗日。分别介绍了这两种方法的详细描述和耦合方案,分别介绍了气体颗粒的流动和化学反应。总结了已发布的CFD研究的最新调查。所开发的模型显示出主要涉及欧拉多流体模型,CFD-DEM(离散元素方法)模型和/或MP-PIC(多相颗粒细胞)模型。分析了它们各自的优点和应用局限性。最后,讨论了未来研究的挑战和需求。 (C)2015 Elsevier Ltd.保留所有权利。

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