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EXPERIMENTAL OBSERVATION OF BUBBLES RELEASED IN HORIZONTAL WATER FLOW

机译:水平水流释放的气泡的实验观察

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To investigate the characteristics of the bubble which is exposed to the liquid cross flow, the method of ventilation was adopted and air was injected into the water flow. A water tunnel was used to provide uniform water flow with variable velocity magnitude. A high speed camera was used to record instantaneous bubble images. An image-processing code was developed to identify bubble profile and to calculate bubble parameters. The effects of water flow velocity and the flow rate of the injected air were considered. The results indicate that bubble size decreases as the water velocity increases; meanwhile, ellipsoidal bubble shape is transformed into rounded shape. The variation in the air flow rate leads to a slight change of bubble size as well the bubble shape. The bubble velocity fluctuates with the movement of the bubble, and the fluctuations are intensified as the water velocity decreases. As the balance between the forces exerted on the bubble is reached, an approximately linear relationship between the bubble velocity and the water flow velocity is proven. For a given bubble equivalent diameter, the bubble terminal velocity with the liquid cross flow is higher than that associated with stagnant water. For small Eotvos number, the consistency of the bubble aspect ratio in the cross flow and the stagnant water is manifested; however, large Eotvos number obtained here is beyond the range associated with the stagnant water, and the existing relationship is extended.
机译:为了研究暴露于液体交叉流的气泡的特性,采用通气方法,注入水流中的空气。使用水隧道提供具有可变速度幅度的均匀水流。高速相机用于记录瞬时泡沫图像。开发了一种图像处理代码以识别泡沫轮廓并计算泡沫参数。考虑了水流速度的影响和注入空气的流速。结果表明,随着水速度的增加,气泡尺寸降低;同时,椭圆形气泡形状转化为圆形。空气流速的变化导致气泡形状的泡沫尺寸的微小变化。气泡速度随着气泡的运动波动,并且随着水速度降低而强化波动。随着达到气泡上施加在气泡的力之间的平衡,证明了气泡速度和水流速度之间的大致线性关系。对于给定的气泡等效直径,液体交叉流量的气泡末端速度高于与停滞水相关的速度。对于小型ETVOS编号,表现出横流和停滞水中气泡纵横比的一致性;然而,这里获得的大型EOTVOS号码超出了与停滞水相关的范围,并且延长了现有的关系。

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