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INFLUENCE OF SURFACE IRREGULARITIES ON HYDRODYNAMIC INSTABILITIES IN COUETTE-TAYLOR FLOW

机译:表面不规则性对Cootete-Taylor流中水动力不稳定性的影响

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In this work, we propose an experimental study of roughness effect on hydrodynamic instabilities' Couette-Taylor flow. During experiments, the inner cylinder rotates at a given angular velocity and the outer cylinder is maintained fix. The main objective of the study is to highlight the geometric parameters ' effect on the flow. We mainly focused our attention on the effect of the wall roughness parameter on the appearance instabilities in the studied configuration (delay or advance in its appearance). For this purpose, a qualitative study was performed using Kalliroscope particles to visualize the instabilities. Then, we applied polarography to different types of roughness as a quantitative study. Hence, the possibility to characterize the flow regimes of the first instabilities (TVF, WVF, MWVF, and TN). The experiments have shown that surface irregularities, have an effect on the appearance of the first instabilities, which depend on the size and nature of the roughness. In fact, the surface roughness not only increases the friction on the wall, but it also greatly influences the transport of the mass and momentum in a given flow regime. The flow, therefore, undergoes more friction when the inner cylinder (in rotation) has a rough surface. This friction slows the velocity of the fluid particles; which delays the onset of instability. The movement of the particles will therefore, be dampened by the irregularities at the level of the rough surface. Moreover, the results also proved that as soon as the Couette-Taylor cells are established, the roughness is no longer a particle motion damper, but on the contrary, it promotes the continuation of the disturbance of the flow. The flow becomes then less slowdown in the hollow of the surface irregularities; which leads to less friction. For higher Taylor numbers, the study showed a faster transition from one regime to another.
机译:在这项工作中,我们提出了对水动力不稳定性库埃特-泰勒流动的粗糙度影响的实验研究。在实验过程中,内圆柱体以给定的角速度旋转,外圆柱体保持固定。该研究的主要目的是强调几何参数对流动的影响。我们主要将注意力集中在壁面粗糙度参数对所研究配置中外观不稳定性(外观延迟或提前)的影响上。为此,使用万花筒镜进行了定性研究,以显示不稳定性。然后,我们将极谱法应用于不同类型的粗糙度作为定量研究。因此,有可能表征第一个不稳定性(TVF,WVF,MWVF和TN)的流动状态。实验表明,表面不规则度对第一不稳定性的外观有影响,该不稳定性取决于粗糙度的大小和性质。实际上,表面粗糙度不仅会增加壁上的摩擦力,而且还会极大地影响给定流态下质量和动量的传输。因此,当内圆筒(旋转中)具有粗糙表面时,流体会承受更大的摩擦力。这种摩擦减慢了流体颗粒的速度。这延迟了不稳定的发生。因此,颗粒的运动将被粗糙表面水平的不规则性所抑制。此外,结果还证明,一旦建立了Couette-Taylor单元,粗糙度就不再是粒子运动阻尼器,相反,它促进了流动扰动的持续。这样,在不规则表面的凹陷处的流动变慢了。从而减少了摩擦。对于更高的泰勒数,该研究表明从一种制度到另一种制度的过渡更快。

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