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Experimental study of internal two-phase flow induced fluctuating force on a 90° elbow

机译:90°弯头内部两相流动引起的脉动力的实验研究

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Experiments were performed with a 52.5. mm I.D., 90° elbow to study the internal two-phase flow induced fluctuating forces on pipe bends. The dynamic force signals were obtained directly from force sensors by separating the natural frequency of test section from the predominant frequency of excitation forces. A total of 36 tests were carried out to cover bubbly, slug, churn and annular flows. The results showed that for a fixed liquid flow rate, the predominant frequency of force peaked at slug flow regime. The root mean square value of force fluctuations continuously increased with gas flow rate and reached its maximum in annular flow regime. The excitation force presented a strong dependence on the momentum flux of two-phase flows. The integral of local pressure measurements could predict the time averaged momentum flux change reasonably well. However, the root mean square values of fluctuating forces were quite different due to the additional effect caused by the impact of liquid slugs on the elbow. The impact force, which has not been emphasized in the literature for the internal two-phase flow induced vibration analysis, is found to be significant in determining the force fluctuations in the slug flow regime. A two-phase flow induced excitation force model was developed based on the local instant formulation of two-fluid model. Analyses showed that the high frequency fluctuating components of centrifugal forces could be damped by the integral effect of the elbow.
机译:实验是在52.5下进行的。内径90mm的弯头,用于研究弯管内部的两相流引起的波动力。通过将测试部分的固有频率与激振力的主要频率分开,可以直接从力传感器获得动态力信号。总共进行了36次测试,以涵盖气泡状,塞状,搅动状和环形流动。结果表明,对于固定的液体流速,主要的力频率在弹状流态达到峰值。力波动的均方根值随着气体流速的增加而连续增加,并在环形流动状态下达到最大值。激振力强烈依赖于两相流的动量通量。局部压力测量的积分可以很好地预测时间平均动量通量的变化。但是,由于液团对肘部的影响会产生附加影响,因此波动力的均方根值差异很大。发现在内部两相流动引起的振动分析中没有强调的冲击力对于确定弹状流态中的力波动很重要。基于两流体模型的局部瞬时公式,建立了两相流感应激振力模型。分析表明,离心力的高频波动分量可以通过弯头的积分效应得到阻尼。

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