首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Developing mechanistic understanding of granular behaviour in complex moving geometry using the Discrete Element Method Part B: Investigation of flow and mixing in the Turbula? mixer
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Developing mechanistic understanding of granular behaviour in complex moving geometry using the Discrete Element Method Part B: Investigation of flow and mixing in the Turbula? mixer

机译:使用离散元方法B部分开发对复杂运动几何中的颗粒行为的机械理解B部分:湍流中流动和混合的研究?混合器

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摘要

As a consequence of increasing computer power and more readily useable commercial codes, the Discrete Element Method is being used in an increasing range of applications to simulate increasingly complex processes, often for evaluation of machinery prototypes. This presents the additional challenge of analysis of results, in particular to extract flow and mixing mechanisms with a view to improving design or operation. The Turbula mixer is a laboratory scale mixer, which is widely used in industry for the development or testing of new granular products. It comprises a simple vessel geometry (cylinder) that moves with a complex, yet regular, 3D motion giving rise to rapid and thorough mixing of the contents. The mixer presents an ideal system for evaluation of the power of DEM to simulate complex processes and to develop protocols for processing the results of the simulation. Initial results of this investigation, presented in this paper, show that mixing behaviour changes non-monotonically as a function of mixer speed. For the system of monodisperse glass spheres it is shown that mixing rate (in terms of number of mixer revolutions to achieve complete mixing) initially decreases with increasing speed and subsequently increases. The behaviour is suggestive of a transition in the flow process and is the subject of further investigation.
机译:由于计算机能力的提高和更易于使用的商业代码的结果,离散元素方法正在越来越多的应用中用于模拟日益复杂的过程,通常用于评估机械原型。这提出了结果分析的额外挑战,特别是为了改善设计或操作而提取流动和混合机制。 Turbula混合机是实验室规模的混合机,在工业上广泛用于开发或测试新的颗粒产品。它包括一个简单的容器几何形状(圆柱体),以复杂但规则的3D运动移动,从而使内容物快速,彻底地混合。混合器提供了一个理想的系统,用于评估DEM的能力,以模拟复杂的过程并开发用于处理模拟结果的协议。本文提出的这项研究的初步结果表明,混合行为随混合器速度的变化非单调变化。对于单分散玻璃球体的系统,显示出混合速率(以达到完全混合的混合器转数而言)最初随着速度的增加而降低,随后增加。该行为暗示流动过程中的转变,并且是进一步研究的主题。

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