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Computational fluid dynamics modelling of gas jets impinging onto liquid pools

机译:射流撞击液体池的计算流体动力学建模

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Gas jets impinging onto a gas-liquid interface of a liquid pool are studied using computational fluid dynamics modelling, which aims to obtain a better understanding of the behaviour of the gas jets used metallurgical engineering industry. The gas and liquid flows are modelled using the volume of fluid technique. The governing equations are formulated using the density and viscosity of the "gas-liquid mixture", which are described in terms of the phase volume fraction. Reynolds averaging is applied to yield a set of Reynolds-averaged conservation equations for the mass and momentum, and the k-ε turbulence model. The deformation of the gas-liquid interface is modelled by the pressure jump across the interface via the Young-Laplace equation. The governing equations in the axisymmetric cylindrical coordinates are solved using the commercial CFD code, FLUENT. The computed results are compared with experimental and theoretical data reported in the literature. The CFD modelling allows the simultaneous evaluation of the gas flow field, the free liquid surface and the bulk liquid flow, and provides useful insight to the highly complex, and industrially significant flows in the jetting system.
机译:使用计算流体动力学模型研究了撞击到液池气液界面上的喷气嘴,目的是更好地了解冶金工程行业使用的喷气嘴的行为。气体和液体流量是使用流体体积技术建模的。控制方程式是使用“气液混合物”的密度和粘度来表示的,这些密度和粘度以相体积分数表示。应用雷诺平均产生质量和动量的一组雷诺平均守恒方程,以及k-ε湍流模型。气-液界面的变形通过Young-Laplace方程通过界面上的压力跳跃来建模。使用商用CFD代码FLUENT求解轴对称圆柱坐标中的控制方程。将计算结果与文献中报道的实验和理论数据进行比较。 CFD建模允许同时评估气流场,自由液体表面和整体液体流动,并为喷射系统中高度复杂且具有工业意义的流动提供有用的见识。

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