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Influence of a Coflowing Ambient Stream on a Turbulent Axisymmetric Buoyant Jet

机译:汇流环境流对湍流轴对称浮力射流的影响

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This paper reports numerical results on turbulent buoyant axisymmetric jets in a coflowing ambient stream. The objective of this study is to compare the performance of the Reynolds stress algebraic model (ASM) with that of the k-e turbulence model in predicting the flow field. A finite difference method has been used to solve a system of coupled partial differential equations. A comparison has been carried out between the numerical results obtained in the present work and experimental and numerical data reported in the literature. It has been found that the two investigated models reasonably predict the mean flow properties of the flow field. Nevertheless, the ASM proves to be better than the k-e method to predict the effects of buoyancy and the turbulence structure. It has been found that the increase of the coflow can slow the development of the jet to the state of similarity of mean characteristic profiles. A jet with a ratio of coflow velocity u_∞ to jet discharge velocity u_0 less than 0.05 has developed to closely approximate a free jet in a stagnant medium while a jet with higher u_∞/u_0 ratio never reaches a similarity state. In buoyant jets, only a flow with u_∝/u_0 ≤ 0.05 reaches a similarity state. Buoyancy ensures that the similarity region begins at a distance closer to the nozzle exit than if the medium is stagnant.
机译:本文报道了在同流环境中湍流浮力轴对称射流的数值结果。这项研究的目的是比较雷诺应力代数模型(ASM)和k-e湍流模型在预测流场方面的性能。有限差分法已用于求解耦合的偏微分方程组。在本工作中获得的数值结果与文献中报道的实验和数值数据之间进行了比较。已经发现,这两个研究模型合理地预测了流场的平均流动特性。尽管如此,ASM被证明比k-e方法更好地预测浮力和湍流结构的影响。已经发现,同流的增加可以使射流的发展减慢到平均特征曲线的相似状态。顺流速度u_∞与射流排出速度u_0之比小于0.05的射流已经发展为在停滞介质中接近自由射流,而具有较高u_∞/ u_0比的射流从未达到相似状态。在浮力射流中,只有u_∝ / u_0≤0.05的流达到相似状态。浮力确保相似区域始于与介质停滞相比更靠近喷嘴出口的距离。

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