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A Mathematical Model of an Impinging Air Jet on a Water Surface

机译:水面上撞击空气射流的数学模型

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A fundamental mathematical model of the flow field and surface deformation caused by an impinging jet in a top blown reactor has been developed. The results have been validated against water model experiments. More specifically, the predicted penetration depth has been found to agree well with surface deformation measurements and predictions using analytical equations. Furthermore, the predictions of the location of a vortex have been found to agree fairly well with PIV measurements. Calculations were also done to compare the widely used standard k-e model against the realizable extension of the standard k-e model to calculate the turbulent conditions of the flow. It was found that the penetration depth caused by the impinging jet on the liquid surface is relatively unaffected by the choice of turbulence model employed. However, when the main re-circulation loop in the bath was investigated there was a clear distinction in the flow fields produced when the two different turbulence models were used.
机译:已经建立了由顶吹反应器中的撞击射流引起的流场和表面变形的基本数学模型。结果已针对水模型实验进行了验证。更具体地说,已经发现预测的穿透深度与表面变形测量和使用解析方程的预测非常吻合。此外,已经发现涡旋位置的预测与PIV测量相当吻合。还进行了计算以将广泛使用的标准k-e模型与标准k-e模型的可实现扩展进行比较,以计算流动的湍流条件。已经发现,由撞击射流引起的在液体表面上的穿透深度相对不受所采用的湍流模型的选择的影响。然而,当研究熔池中的主要再循环回路时,当使用两种不同的湍流模型时产生的流场有明显的区别。

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