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首页> 外文期刊>Journal of Hydraulic Engineering >Computational Study of the Source-Area Effect for Bubble Plumes in Stratified Environments
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Computational Study of the Source-Area Effect for Bubble Plumes in Stratified Environments

机译:分层环境中气泡羽状物源面积效应的计算研究

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摘要

In this work, a large-eddy simulation of bubble plumes in linearly stratified environments is presented. The gas bubbles are treated as Lagrangian particles. The intrusion and peeling are clearly manifested in the computed flow fields. The results of about 50 simulations with different parameters reveal the importance of bubble source area for plumes on the laboratory scale. A new type of bubble plume with rapid and distinct peelings is observed which is favored by large source areas. With a proper normalization, the present data points collapse onto a single straight line after applying a virtual-source correction which reflects the source-area effect. These results provide a plausible explanation for the scatter of the previous experimental and computational data in literature. A simple relation between the trap height and the peel height is observed and its mechanism is discussed.
机译:在这项工作中,提出了线性分层环境中气泡羽流的大涡模拟。气泡被视为拉格朗日粒子。在计算的流场中清楚地表明了侵入和剥离。大约50个具有不同参数的模拟结果表明,在实验室规模上,气泡源面积对于羽流的重要性。观察到一种新型的带有快速且明显脱皮的气泡羽流,这种气泡羽流受到较大来源区域的青睐。通过适当的归一化,在应用反映源区域效应的虚拟源校正之后,当前数据点会折叠到一条直线上。这些结果为先前文献中的实验和计算数据的分散提供了合理的解释。观察了捕集阱高度和剥离高度之间的简单关系,并讨论了其机理。

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