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Mathematical modellin of injection processes

机译:注射过程的数学建模

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Submerged injection is widely used in pyrometallurgical processes for introducing reactants to reaction vessels such as smelters, and for ensuring high rates of reaction through rapid mixing. For some years, mathematical models have been applied to the prediction of bath circulation and bubble distribution in cases of low to moderate rates of gas injection with a reasonably high degree of success. These models, the most advanced models being so-called "multi-fluid models", have been steadily increasing in complexity and in the level of detail that they predict, including the spout region, splash and wave motion. This paper summarises the progress in modelling gas injection in general, and details in particular some work that has been done modelling wave motion. Air-water models of a generic upright cylindrical geometry have been used to determine the frequency and amplitude of waves generated in a liquid bath by bottom gas injection. Wave motion (or slopping) is found to couple strongly to motion of the gas-liquid plume for certain ranges of injection conditions. This behaviour has been modelled using a modal analysis model. Such modelling techniques can be used to optimize vessel geometry and injection location to minimize slopping or wave motion.
机译:浸入式注射广泛用于高温冶金方法中,用于将反应物引入反应容器,例如冶炼厂,并通过快速混合确保高反应率。多年来,数学模型已被应用于浴循环和气泡分布的预测,在低至中等气体注入率的情况下,具有相当高的成功。这些模型是所谓的“多流体模型”的最先进模型,在复杂性和预测的细节水平上稳步增加,包括喷口区域,飞溅和波动运动。本文总结了普通气体注入的进展,以及特别是已经完成建模波动动的工作的细节。通用直立圆柱形几何形状的空气水模型已用于确定通过底部气体喷射在液体浴中产生的波的频率和幅度。发现波动(或倾斜)对气液羽流的运动相对于某些注射条件的速度耦合。此行为已经使用模态分析模型进行了建模。这种建模技术可用于优化血管几何形状和注入位置以使倾斜或波动运动最小化。

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