Vortex-Type Granulation Machines: Technological Basis of Calculation and Implementation Roadmap

IF 1 Q4 ENGINEERING, MECHANICAL
A. Artyukhov, J. Krmela, V. Krmelová, Dastan Ospanov
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引用次数: 0

Abstract

Abstract This work is devoted to describing the technological foundations and the main stages of calculating granulation machines with active hydrodynamic modes. The optimisation criterion is substantiated when choosing the design of the granulation machine. The work uses methods of analysis and synthesis, search for cause-and-effect relationships, theoretical and computer modelling, and experimental studies. The nodes of the vortex granulator directly influence the formation of a vortex fluidised bed, and the directional movement of granules of various sizes are determined. A technique for carrying out a computer simulation of the hydrodynamic operating conditions of a granulation machine in various operating modes with an assessment of the quality of granulated products (e.g., the production of porous ammonium nitrate) is proposed. The results of a computer simulation of the process of formation of a vortex fluidised bed are presented. A variant of the solution for developing an automation scheme for a vortex-type granulation machine is shown. A roadmap for introducing granulation technology in vortex-type granulation machines is described with details of the main stages. The prospects for improving the design of a vortex-type granulation machine and optimising the operation of a granulation plant to produce porous ammonium nitrate are outlined.
涡旋式制粒机:计算的技术基础和实施路线图
摘要本工作致力于描述计算具有主动流体动力学模式的造粒机的技术基础和主要阶段。在选择造粒机的设计时,优化标准得到了证实。这项工作使用了分析和综合、寻找因果关系、理论和计算机建模以及实验研究的方法。涡流造粒机的节点直接影响涡流流化床的形成,并确定了各种尺寸颗粒的定向运动。提出了一种在各种操作模式下对造粒机的流体动力学操作条件进行计算机模拟并评估造粒产品质量(例如多孔硝酸铵的生产)的技术。给出了涡流流化床形成过程的计算机模拟结果。显示了用于开发涡流式造粒机的自动化方案的解决方案的变体。介绍了在涡流式造粒机中引入造粒技术的路线图,并详细介绍了主要阶段。概述了改进涡流式造粒机设计和优化造粒装置生产多孔硝酸铵的前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Acta Mechanica et Automatica
Acta Mechanica et Automatica ENGINEERING, MECHANICAL-
CiteScore
1.40
自引率
0.00%
发文量
45
审稿时长
30 weeks
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