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Horizontal round heated jets into calm uniform ambient

机译:水平的圆形加热喷头进入平静均匀的环境

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摘要

In this article, we investigate horizontal, round, turbulent buoyant jets that discharge in a homogeneous calm ambient fluid. In a series of experiments performed, the initial jet Richardson numbers ranged from very small (jet-like) to around unity (plume-like), to include the full extent of applications. The mixing characteristics such as trajectories obtained with video imaging, turbulence properties measured with fast response thermistors, and dilution factors are evaluated. The trajectories of buoyancy-conserving horizontal jets bend faster than those observed in heated jets. The flow resembles a jet-like behavior in the 'horizontal' regime, while the mean and turbulent temperature profiles become asymmetrical in the transition and the 'vertical' regime. The maximum intensity of turbulence doubles in the 'vertical' regime if compared to that in the 'horizontal' part of the flow. Minimum dilutions obtained from experiments at the jet axis are compared to the results of a one-dimensional numerical model of a heated horizontal jet, where the loss of buoyancy flux has been accounted for.
机译:在本文中,我们研究了水平,圆形,湍流的浮力射流,这些射流在均质的平静环境流体中排放。在进行的一系列实验中,初始喷气理查森数范围从非常小(喷气状)到大约1(松软状),以涵盖整个应用范围。评估混合特性,例如通过视频成像获得的轨迹,使用快速响应热敏电阻测量的湍流特性以及稀释系数。保持浮力的水平射流的弯曲轨迹比加热射流弯曲的快。在“水平”状态下,该流动类似于喷射状行为,而在过渡和“垂直”状态下,平均和湍流温度曲线变得不对称。与“水平”流动相比,“垂直”状态的最大湍流强度增加了一倍。将在射流轴上从实验中获得的最小稀释度与加热的水平射流的一维数值模型的结果进行比较,其中已计入了浮力通量的损失。

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