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On the application of LDA to bubbly flow in the wobbling regime

机译:关于LDA在摆动状态下气泡流中的应用

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摘要

Considerations for applying LDA to bubbly flows with bubbles about 3 to 4 mm in diameter were investigated by means of detailed experiments in the model geometry of a train of bubbles. Both forward scatter and backscatter LDA were studied. The validity of phase discrimination via burst amplitude was tested and special attention was paid to the impact of bubble interface response to the laser beams. Forward and backscatter measurements can be compared well. In both configurations, predominantly the liquid phase is 'seen' by LDA. A bubble itself only leads to a velocity realization in special conditions. In those cases the Doppler shift is determined by the motion of the bubble interface which consists of the motion of the center of gravity of the bubble as well as shape oscillations. In backscatter bubbles only give velocity realizations when their 'cheeks' pass through the measuring volume virtually perpendicularly. It is shown that the bubble-caused velocity realization frequency is very low for bubbles of the size used. Phase discrimination on burst amplitude does not hold. In ambient cases such as bubble columns one can assume that only the liquid phase is being studied.
机译:通过在一系列气泡的模型几何中进行详细的实验,研究了将LDA应用于直径约3-4 mm的气泡的气泡流的考虑。对前向散射和后向散射LDA均进行了研究。测试了通过猝发幅度进行相位鉴别的有效性,并特别注意了气泡界面响应对激光束的影响。前向和后向散射测量结果可以很好地进行比较。在这两种配置中,液相主要是由LDA“看到”的。气泡本身仅在特殊条件下导致速度实现。在这些情况下,多普勒频移由气泡界面的运动确定,该运动由气泡重心的运动以及形状振荡组成。在后向散射中,气泡只有在其“颊”几乎垂直穿过测量体积时才能实现速度。结果表明,对于所用尺寸的气泡,气泡引起的速度实现频率非常低。突发幅度的相位识别不成立。在诸如气泡塔之类的环境情况下,可以假定仅在研究液相。

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