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A review of stochastic description of the turbulence effect on bubble-particle interactions in flotation

机译:浮选中湍流对气泡-颗粒相互作用的随机描述综述

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摘要

Flotation in mechanically agitated cells has been the workhorse of the mining industry, but our quantitative understanding of the effect of microturbulence generated by agitation on flotation is still very limited. This paper aims to review the literature on quantifying the microturbulence effects on bubble-particle interactions in flotation. The particular focus is on the stochastic description of bubble-particle interactions in the turbulent flow which is a random field. We briefly review the stochastic description of microturbulence and motions of particles of micrometre sizes and bubbles of millimetre sizes in the isotropic turbulence of mechanical flotation cells. The key starting point is the generic equation of motion, which can be decomposed into the mean turbulent variables and fluctuating turbulent variables. The turbulent flow of the carrying liquid is characterised using isotropic turbulence theory. The next focus is on reviewing bubble-particle turbulent collision and detachment interactions. Bubble-particle turbulent collision is poorly quantified; no quantitative models of the bubble-particle turbulent collision efficiency relevant for flotation are available. Current theories on bubble-particle turbulent detachment face some deficiencies. In assessing the microturbulence effect on bubble-particle detachment, the majority of studies only considers the particle acceleration in the centrifugal direction but ignore the transverse acceleration of particles, which is due to turbulent shear flow. Critically, contact angle required in quantifying the detachment is not constant, single-valued as considered in the theories, but can vary from receding to advancing value during the relaxation of the triple contact line on the particle surface. The latest experiments show that multiple-valued contact angle can significantly affect stability and detachment of floating particles. Finally, quantifying the microturbulence effect on flotation requires further research.
机译:机械搅拌池中的浮选一直是采矿业的主力军,但我们对搅拌产生的微湍流对浮选影响的定量理解仍然非常有限。本文旨在回顾有关浮选中微湍流对气泡-颗粒相互作用的影响的文献。特别关注的是湍流中气泡-颗粒相互作用的随机描述,它是一个随机场。我们简要回顾了微湍流的随机描述,以及机械浮选池各向同性湍流中微米级颗粒和毫米级气泡的运动。关键出发点是运动的通用方程,可以将其分解为平均湍流变量和波动的湍流变量。使用各向同性湍流理论来表征载液的湍流。下一个重点是研究气泡-粒子湍流碰撞和脱离相互作用。气泡-颗粒湍流碰撞的量化较差;没有与浮选有关的气泡-颗粒湍流碰撞效率的定量模型。当前关于气泡-颗粒湍流脱离的理论面临一些缺陷。在评估微湍流对气泡-颗粒分离的影响时,大多数研究仅考虑颗粒在离心方向上的加速度,而忽略了由于湍流剪切流引起的颗粒的横向加速度。至关重要的是,量化分离所需的接触角不是恒定的,如理论中所述是单值的,但是在粒子表面上的三重接触线松弛期间,其后退值可能会有所变化。最新的实验表明,多值接触角可以显着影响漂浮颗粒的稳定性和脱离。最后,量化微湍流对浮选的影响需要进一步的研究。

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