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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Wind-Driven Rivulet Breakoff and Droplet Flows in Microgravity and Terrestrial-Gravity Conditions
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Wind-Driven Rivulet Breakoff and Droplet Flows in Microgravity and Terrestrial-Gravity Conditions

机译:在微重力和地面重力条件下的风速小流折断和液滴流动

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摘要

A study is reported of the wind-driven breakoff of rivulets and subsequent droplet flows on a horizontal plate subject to different normal gravitational states, ranging from zeroto terrestrial-gravily conditions (1 g), and including some data for partial gravity conditions (between 0.1 g and 0.38 g). The study entailed experiments conducted in the authors' laboratory at the University of Iowa and onboard the NASA KC-135, parabolicflight airraft. The wind-driven rivulets exhibited a breakoff phenomenon over a broad range of flow rates, in which a "head" at the tip of the rivulet broke off periodically to form a droplet that advected down the plate. The rivulet breakoff phenomena was sensitive to the normal gravitational force acting on the plate. For instance, the frequency ofrivulet breakoff was nearly an order-of-magnitude greaterfor the 0 g condition than for the same flow in the 1 g condition. The droplet shape and behavior were observed to be quite different between the two cases. It was furthermore found in all cases examined that wind-driven rivulet and droplet flows are markedly different from gravitationally driven flows. These differences arise primarily from the role of form drag on the droplets and onthe raised ridge of the rivulet and pool flows near the moving contact line.
机译:据报道,在水平重力作用下,水平方向上的小流在气流作用下破裂,随后在垂直方向上从零到地面重力(1 g),包括部分重力条件(0.1至0.1)之间的数据。 g和0.38 g)。这项研究需要在爱荷华大学的作者实验室以及NASA KC-135抛物线飞机上进行的实验。风驱动的小铆钉在很宽的流速范围内均表现出折断现象,其中,在小钉尖端的“头部”周期性地折断,形成沿平板向下平移的液滴。小溪折断现象对作用在板上的法向重力很敏感。例如,在0 g条件下,小流折断的频率比在1 g条件下的相同流量大近一个数量级。在这两种情况下,观察到液滴的形状和行为是完全不同的。此外,在所有检查的情况下,发现风驱动的小溪和液滴流与重力驱动的流明显不同。这些差异主要是由于形式阻力作用在小滴和小溪的凸起脊上以及移动接触线附近的池水的作用。

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