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首页> 外文期刊>Journal of Fluids and Structures >A flexible rod in annular leakage flow: Influence of turbulence and equilibrium offset, and analysis of instability mechanisms
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A flexible rod in annular leakage flow: Influence of turbulence and equilibrium offset, and analysis of instability mechanisms

机译:环形泄漏流中的柔性杆:湍流和平衡偏移的影响以及失稳机理的分析

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摘要

The linear stability of a flexible, cylindrical rod subjected to annular leakage flow is studied. The mathematical models developed by Li, Kaneko, and Hayama in 2002 and Fujita and Shintani in 2001 are bridged and extended, to account for a flexible rod with equilibrium offset (eccentricity) in laminar or turbulent leakage flow. Stability characteristics are analyzed numerically for a variety of configurations. It is found that simply supported rods may become unstable at a certain critical flow speed by either divergence or flutter, depending on dimensions and fluid/solid properties. It is furthermore found that the critical flow speed is quite insensitive to use of a laminar friction model at high Reynolds numbers in cases of divergence, but sensitive to it in cases of flutter. These findings are verified analytically though analysis of an energy equation. This equation shows that (i) divergence instability is independent of fluid friction; (ii) flutter instability is caused solely by fluid friction. It also suggests a possible explanation to the question of why a 'wrong' fluid friction assumption gives a too large critical flow speed in cases of flutter instability at a high Reynolds number.
机译:研究了承受环形泄漏流的挠性圆柱杆的线性稳定性。由Li,Kaneko和Hayama在2002年以及Fujita和Shintani在2001年开发的数学模型被桥接和扩展,以解释在层流或湍流泄漏流中具有平衡偏移(偏心率)的柔性杆。对各种配置的数值进行了稳定性分析。已经发现,取决于尺寸和流体/固体特性,简单支撑的杆在一定的临界流速下可能会因发散或颤动而变得不稳定。此外还发现,在发散的情况下,临界流速对于在高雷诺数下使用层状摩擦模型非常不敏感,而在颤动的情况下对其敏感。通过对能量方程的分析,对这些发现进行了分析验证。该方程式表明:(i)发散不稳定性与流体摩擦无关; (ii)颤振不稳定性仅由流体摩擦引起。对于高雷诺数下颤振不稳定的情况,为什么“错误的”流体摩擦假设会导致临界流速过大,也为问题提供了可能的解释。

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