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DAMPING MEASUREMENTS IN TUBE BUNDLES SUBJECTED TO TWO-PHASE CROSS FLOW

机译:两相流对管束的阻尼测量

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An experimental study was conducted to investigate two-phase damping in tube arrays. The objective was to compare different measurement methodologies in order to obtain a more reliable damping estimate. This will allow for improved guidelines related to failures due to fluidelastic instability in tube bundles. The methods compared were the traditionally used half-power bandwidth, the logarithmic decrement and an exponential fitting to the tube decay response. The working fluid used was Refrigerant 11 (Freon), which better models the real steam-water problem, as it allows for phase change. The void fraction was measured using a gamma densitometer, introducing an improvement over the traditional Homogeneous Equilibrium Model (HEM) in terms of velocity and density predictions. The results obtained by using the half-power bandwidth method agree with data previously reported for two-phase flow. The experiments showed that the half-power bandwidth produces higher damping values than the other two, but only up to a certain void fraction. After that point, the results obtained from the three methods are very similar. The exponential fitting proved to be more consistent than the logarithmic decrement, and it is not as sensitive as the half-power bandwidth to the frequency shifting caused by the change in added mass around the tube. By plotting the damping ratio as a function of void fraction, pitch mass flux and flow regime, we were able to verify that damping is more dependent on void fraction and flow regime than on mass flux.
机译:进行了一项实验研究,以研究管阵列中的两相阻尼。目的是比较不同的测量方法,以获得更可靠的阻尼估计。这将允许改进与因管束中的流体弹性不稳定性引起的失效有关的准则。比较的方法是传统使用的半功率带宽,对数递减以及对管衰减响应的指数拟合。所使用的工作流体是制冷剂11(氟利昂),它可以更好地模拟实际的蒸汽-水问题,因为它可以进行相变。使用伽玛密度计测量空隙率,在速度和密度预测方面引入了对传统均质平衡模型(HEM)的改进。通过使用半功率带宽方法获得的结果与先前报道的两相流数据相符。实验表明,半功率带宽产生的阻尼值高于其他两个,但仅达到一定的空隙率。此后,从这三种方法获得的结果非常相似。事实证明,指数拟合比对数减量更为一致,并且它不如半功率带宽对由管周围增加的质量变化引起的频移敏感。通过将阻尼比绘制为空隙率,沥青质量通量和流态的函数,我们能够验证阻尼比质量流率更依赖空隙率和流态。

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