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A new model for damping controlled fluidelastic instability in heat exchanger tube arrays

机译:阻尼管阵列流体弹性失稳的新模型

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Heat exchanger tube arrays are susceptible to damage due to flow-induced vibration, with fluidelastic instability (FEI) potentially being the most destructive mechanism. In this article a simple wake model consisting of a convecting vortex sheet is proposed to represent the transient nature of fluidelastic forces present in a tube array. Using this model, the memory function proposed by Granger and Paidoussis has been obtained without the need to calibrate the model with experimental data. The resulting function is found to comparewell with the first-and second-order empirical approximations. The memory function has been combined with experimental data for the static fluid force to produce a prediction of the critical velocity for a range of mass damping parameters. This stability threshold is in reasonable agreement with experimental data. Therefore, it is concluded that vorticity transport may well form part of the underlying mechanism responsible for damping controlled FEI, as previously proposed. [PUBLICATION ABSTRACT]
机译:换热器管阵列容易受到由于流动引起的振动的损害,而流弹性不稳定性(FEI)可能是最具破坏性的机制。在本文中,提出了一个由对流涡旋片组成的简单尾流模型,以表示存在于管阵列中的流体弹力的瞬态性质。使用该模型,无需使用实验数据校准模型即可获得Granger和Paidoussis提出的记忆功能。发现结果函数与一阶和二阶经验近似值比较良好。记忆功能已与静态流体力的实验数据相结合,以产生一系列质量阻尼参数的临界速度预测。该稳定性阈值与实验数据合理地吻合。因此,可以得出结论,如先前所提出的,涡旋传输很可能构成了负责阻尼受控FEI的基本机制的一部分。 [出版物摘要]

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