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Bubble-size distributions produced by wall injection of air into flowing freshwater, saltwater and surfactant solutions

机译:通过壁注入空气流入流动的淡水,盐水和表面活性剂溶液产生的气泡尺寸分布

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摘要

As air is injected into a flowing liquid, the resultant bubble characteristics depend on the properties of the injector, near-wall flow, and flowing liquid. Previous research has shown that near-wall bubbles can significantly reduce skin-friction drag. Air was injected into the turbulent boundary layer on a test section wall of a water tunnel containing various concentrations of salt and surfactant (Triton-X-100, Union Carbide). Photographic records show that the mean bubble diameter decreased monotonically with increasing salt and surfactant concentrations. Here, 33 ppt saltwater bubbles had one quarter, and 20 ppm Triton-X-100 bubbles had one half of the mean diameter of freshwater bubbles.
机译:当空气被注入流动的液体中时,所得气泡特性取决于喷射器,近壁流和流动液体的性质。以前的研究表明,近壁泡可以显着降低皮肤摩擦阻力。在含有各种浓度的盐和表面活性剂(Triton-X-100,Union Carbide)的水隧道的试验部分壁上注入湍流边界层。摄影记录表明,随着盐和表面活性剂浓度的增加,平均气泡直径单调性地降低。这里,33个PPT盐水泡有四分之一,并且20ppm Triton-x-100气泡具有淡水泡的平均直径的一半。

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