用于旋转滚筒成本效益建模的双边半解析 CFD-DEM 方法

IF 4.1 2区 工程技术 Q2 ENGINEERING, CHEMICAL Chemical Engineering Science Pub Date : 2024-07-16 DOI:10.1016/j.ces.2024.120491
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引用次数: 0

摘要

以可行的计算成本数值描述粒子流相间流动细节具有重要意义。受半分辨计算流体力学-离散元方法(CFD-DEM)的启发,本研究开发了一种改进的双边半分辨 CFD-DEM 方法(BSM)。与传统的分割颗粒体积法(DPVM)和最新的半解析 CFD-DEM 方法(SM)相比,BSM 方法允许更高分辨率的网格,在模拟固体体积分数和速度等急剧梯度的瞬态流动时,具有更高的精度和适用性。然后将 BSM 方法应用于旋转滚筒,通过研究内部流体力学细节来证明其有效性。详细说明了典型的流动行为,然后分析了复原和摩擦对内部流动的影响,并详细说明了其在休止角、活性-被动区、固体停留时间、颗粒混合和轴向分散方面的有效性。结果表明,活性深度、混合程度和颗粒分散与摩擦力呈正相关,而恢复力的增加对颗粒流没有明显影响。这项工作为理解涉及急剧梯度的多相瞬态流提供了一种改进的数值工具。
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A bilateral semi-resolved CFD-DEM approach for cost-effective modelling in a rotary drum

It is of significance to numerically describe particle-flow interphase flow details at a feasible computational cost. Inspired by the semi-resolved Computational Fluid Dynamics-Discrete Element Method (CFD-DEM), an improved bilateral semi-resolved CFD-DEM approach (BSM) approach is developed in this work. Compared with the conventional divided particle volume method (DPVM) and recent semi-resolved CFD-DEM (SM) approach, the BSM approach allows a higher-resolution mesh and achieves higher accuracy as well as applicability when simulating the transient flow with sharp gradients of solid volume fraction and velocity etc. Then the BSM approach is applied to a rotary drum to demonstrate the effectiveness by investigating the internal hydrodynamics details. The typical flow behaviours are detailed; then the effects of the restitution and friction on the internal flow are analysed with details to demonstrate its effectiveness in terms of repose angle, active–passive zone, solid residence time, particle mixing and axial dispersion. The results show a positive correlation of the active depth, mixing degree, and particle dispersion with the friction, while restitution increasing depicts no significant effects on this particulate flow. This work provides an improved numerical tool for understanding the multiphase transient flows involving sharp gradients.

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来源期刊
Chemical Engineering Science
Chemical Engineering Science 工程技术-工程:化工
CiteScore
7.50
自引率
8.50%
发文量
1025
审稿时长
50 days
期刊介绍: Chemical engineering enables the transformation of natural resources and energy into useful products for society. It draws on and applies natural sciences, mathematics and economics, and has developed fundamental engineering science that underpins the discipline. Chemical Engineering Science (CES) has been publishing papers on the fundamentals of chemical engineering since 1951. CES is the platform where the most significant advances in the discipline have ever since been published. Chemical Engineering Science has accompanied and sustained chemical engineering through its development into the vibrant and broad scientific discipline it is today.
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