Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

In Silico CFD Investigation of the Granulation Hydrodynamics in Rotating Drum: Process Sensitivity to the Operating Parameters and Drag Models

View through CrossRef
Computational fluid dynamics (CFD) have been extensively used to simulate the hydrodynamics of multiphase flows (MPFs) in rotating machinery. In the presence of a granular dense phase, the Kinetic Theory of Granular Flow (KTGF) is usually coupled to Eulerian multi-fluid models to obtain tractable computational fluid models. In the present work, the hydrodynamic behavior of a three dimensional, industrial scale, and rotating drum granulator with gas–solid flows is assessed using the Eulerian–Eulerian approach coupled with the k-ε standard turbulence model. A Eulerian–Eulerian Two-Fluid Model (TFM) is used with the KTGF model for the granular phase. The sensitivities to different operating parameters, including the rotational speed (8, 16, and 24 rpm), inclination degree (3.57∘, 5.57∘, and 7.57∘), and degree of filling (20%, 30%, and 40%) are studied. Moreover, the impact of the drag model on the simulation accuracy is investigated. The flow behavior, regime transitions, and particle distribution are numerically evaluated, while varying the operating conditions and the drag models. The rotational speed and filling degree appear to have greater influences on the granulation effectiveness than on the inclination degree. Three drag models are retained in our analysis. Both the Gidaspow and Wen and Yu models successfully predict the two-phase flow in comparison to the Syamlal and O’Brien model, which seems to underestimate the hydrodynamics of the flow in both its axial and radial distributions (a fill level less than 35%). The methodology followed in the current work lays the first stone for the optimization of the phosphates fertilizer wet-granulation process within an industrial installation.
Title: In Silico CFD Investigation of the Granulation Hydrodynamics in Rotating Drum: Process Sensitivity to the Operating Parameters and Drag Models
Description:
Computational fluid dynamics (CFD) have been extensively used to simulate the hydrodynamics of multiphase flows (MPFs) in rotating machinery.
In the presence of a granular dense phase, the Kinetic Theory of Granular Flow (KTGF) is usually coupled to Eulerian multi-fluid models to obtain tractable computational fluid models.
In the present work, the hydrodynamic behavior of a three dimensional, industrial scale, and rotating drum granulator with gas–solid flows is assessed using the Eulerian–Eulerian approach coupled with the k-ε standard turbulence model.
A Eulerian–Eulerian Two-Fluid Model (TFM) is used with the KTGF model for the granular phase.
The sensitivities to different operating parameters, including the rotational speed (8, 16, and 24 rpm), inclination degree (3.
57∘, 5.
57∘, and 7.
57∘), and degree of filling (20%, 30%, and 40%) are studied.
Moreover, the impact of the drag model on the simulation accuracy is investigated.
The flow behavior, regime transitions, and particle distribution are numerically evaluated, while varying the operating conditions and the drag models.
The rotational speed and filling degree appear to have greater influences on the granulation effectiveness than on the inclination degree.
Three drag models are retained in our analysis.
Both the Gidaspow and Wen and Yu models successfully predict the two-phase flow in comparison to the Syamlal and O’Brien model, which seems to underestimate the hydrodynamics of the flow in both its axial and radial distributions (a fill level less than 35%).
The methodology followed in the current work lays the first stone for the optimization of the phosphates fertilizer wet-granulation process within an industrial installation.

Related Results

Afrikanske smede
Afrikanske smede
African Smiths Cultural-historical and sociological problems illuminated by studies among the Tuareg and by comparative analysisIn KUML 1957 in connection with a description of sla...
Study on Drag Reduction Performance of Antifouling Ribbed Surfaces
Study on Drag Reduction Performance of Antifouling Ribbed Surfaces
Drag reduction by ribbed surfaces is a potentially effective strategy for reducing the energy consumption of ships. However, complicated by possible marine biofouling, it is meanin...
Pelaksanaan Kegiatan Ekstrakurikuler Drum Band di SMA Negeri 1 Lebong
Pelaksanaan Kegiatan Ekstrakurikuler Drum Band di SMA Negeri 1 Lebong
Penelitian ini bertujuan untuk mengetahui dan mendeskripsikan kegiatan ekstrakurikuler drum band di SMAN 1 Lebong. Jenis penelitian ini adalah penelitian kualitatif dengan metode d...
An analysis of drag force and moment for upright porous wind fences
An analysis of drag force and moment for upright porous wind fences
Upright porous wind fences have been studied extensively because of their wide use. This paper analyzes the drag force and moment of fences to provide corroborating evidence for de...
The immediate effect of spinal manipulative therapy on drag flicking performance of field hockey players
The immediate effect of spinal manipulative therapy on drag flicking performance of field hockey players
Background In sport, competitive athletes are required to perform to the best of their ability, with some athletes seeking the use of chiropractic treatment to improve performance....
The icy regoliths of Enceladus and Europa : experimental and numerical study
The icy regoliths of Enceladus and Europa : experimental and numerical study
<p><strong>Acknowledgements</strong></p> <p>The present study received financial supports from the project GRI...
Quantitative dispersion analysis of leakages of flammable and/or toxic substances on environments with barriers or semi-confined
Quantitative dispersion analysis of leakages of flammable and/or toxic substances on environments with barriers or semi-confined
With the industrial and technological development of the present-day society, the presence of flammable and toxic substances has increased in a growing number of activities. Disper...
Evaluation of Computational Fluid Dynamics Modeling for Erosion in Elbow With a Large-Scale Erosion Database
Evaluation of Computational Fluid Dynamics Modeling for Erosion in Elbow With a Large-Scale Erosion Database
Abstract Computational Fluid Dynamics has been widely used in various engineering applications. Solid particle erosion of material is a multi-physics problem that re...

Back to Top