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An experimental investigation on the narrow annular-flow-induced vibration instability of a tube

机译:窄环流引起的管振动不稳定性的实验研究

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The stability of a simply-supported tube subjected to annular flow in a finitelength narrow gap support is experimentally investigated. The exit boundary condition of the annular-leakage passage is known to be a possible cause of instability of the inner tube. In this study, therefore, several finite-length gap supports considering two diffuser angles were investigated on the effects of the annular gap and diffuser angle to the instability of the inner tube. Numerous experiments with the different supports have been performed in a transparent plexiglass tube so that a basic annular-flow can be provided for the inner tube and the movement of the tube can be measured by several laser vibrometers. It is observed that (1) the tube loses stability by flutter at very low flow velocity; the highest critical flow velocity is 3 m/s, (2) the critical flow velocity is strongly dependent on the annular gap size, the diffuser angle and the combination of both, and (3) generally the smaller the gap the lower the critical flow velocity.
机译:实验研究了在有限长度的窄间隙支撑中承受环形流动的简支管的稳定性。已知环形泄漏通道的出口边界条件是内管不稳定的可能原因。因此,在这项研究中,研究了考虑两个扩散角的几个有限长度的间隙支撑,研究了环形间隙和扩散角对内管不稳定性的影响。已经在透明的有机玻璃管中进行了使用不同支撑物的大量实验,从而可以为内管提供基本的环形流,并且可以通过多个激光振动计测量管的运动。观察到:(1)管子在非常低的流速下会因颤动而失去稳定性;最高临界流速为3 m / s,(2)临界流速在很大程度上取决于环形间隙的大小,扩散角和两者的组合;(3)通常,间隙越小,临界流速越低速度。

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