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首页> 外文期刊>Journal of Fluid Mechanics >Mean velocity, spreading and entrainment characteristics of weak bubble plumes in unstratified and stationary water
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Mean velocity, spreading and entrainment characteristics of weak bubble plumes in unstratified and stationary water

机译:弱气泡羽毛在未加工和固定水中的平均速度,扩散和夹带特性

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In this paper we present an experimental and theoretical study of weak bubble plumes in unstratified and stationary water. We define a weak bubble plume as one that spreads slower than the linear rate of a classic plume. This work focuses on the characteristics of the mean flow in the plume, including centreline velocity, plume spreading and entrainment of ambient water. A new theory based on diffusive spreading instead of an entrainment hypothesis is used to describe the lateral spreading of the bubbles and the associated plume. The new theory is supported by the experimental data. With the measured data of liquid volume fluxes and the new theory, we conclude that the weak bubble plume is a decreasing entrainment process, with the entrainment coefficient alpha in the weak bubble plume decreasing with height z, following alpha similar to z(-1/2), and taking on values much smaller than those in a classic bubble plume. An additional non-dimensional diffusion coefficient, (E) over cap (t) similar to EtUs2/B-0, is also needed to describe the evolution of the volume and kinematic momentum fluxes for the mean flow in the weak bubble plume. Here, Et is the effective turbulent diffusion coefficient, U-s is the terminal rise velocity of the bubbles, and B-0 is the kinematic buoyancy flux of the source. Finally, we provide a unified framework for the mean flow characteristics, including volume flux, momentum flux and plume spreading for the classic and weak bubble plumes, which also provides insight on the transition from classic to weak bubble plume behaviour.
机译:本文介绍了在未加工和固定水中的弱气泡羽毛的实验和理论研究。我们将弱气泡羽流定义为比经典羽流的线性速率慢。这项工作侧重于羽流平均流量的特点,包括中心线速度,羽流扩散和环境水的夹带。基于扩散扩散而不是夹带假设的新理论用于描述气泡和相关羽流的横向扩散。新理论得到了实验数据的支持。随着液体体积助熔剂和新理论的测量数据,得出结论,弱气泡羽流是夹带过程的降低,夹带系数α在弱气泡羽流中用高度Z减小,α类似于Z(-1 / 2),并采用比经典泡沫羽流量小得多的值。还需要另外的非尺寸扩散系数,(e)与ETUS2 / B-0类似的帽(T),以描述弱气泡羽流中的平均流量的体积和运动动量通量的演变。这里,ET是有效的湍流扩散系数,U-S是气泡的末端上升速度,B-0是源的运动浮力通量。最后,我们为平均流动特性提供了统一的框架,包括对经典和弱泡沫羽毛的体积助熔剂,动量通量和羽流,这还提供了对从经典转变为弱气泡羽流的过渡的洞察力。

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