首页> 外文会议>ASME Pressure Vessels and Piping conference >A QUASI-STEADY IN-PLANE FLUIDELASTIC INSTABILITY ANALYSIS OF A ROTATED TRIANGULAR TUBE ARRAY IN TWO-PHASE CROSS FLOW
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A QUASI-STEADY IN-PLANE FLUIDELASTIC INSTABILITY ANALYSIS OF A ROTATED TRIANGULAR TUBE ARRAY IN TWO-PHASE CROSS FLOW

机译:两相流中旋转三角形管的准稳态平面内流体弹塑性不稳定性分析

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In-plane fluidelastic instability is a dynamic phenomenon requiring fluid coupling of at least two degrees-of-freedom, in this case, at least two flexible tubes. Due to the nature of the mechanism causing streamwise fluidelastic instability, a purely experimental or an unsteady determination would require intensive experimental effort. As a compromise between experimental effort and prediction accuracy, the quasi-steady model is used in the current study. In the present work, previously measured quasi-steady and unsteady forces are used to estimate the time delay first between the displacement of an oscillating tube and the forces generated on itself then the time delay between the displacement of a central oscillating tube and the forces induced on the adjacent tubes. The estimated time delays are then used together with drag coefficients and derivatives to predict the in-plane fluidelastic instability in a rotated triangular tube array of P/D=1.5 subjected to two-phase flow. The results closely replicate dynamic test results and confirm the predominance of the stiffness controlled mechanism and the potential of the quasi-steady model in accurately predicting streamwise fluidelastic instability in arrays subjected to two-phase flows.
机译:平面内流体弹性不稳定性是一种动态现象,需要至少两个自由度(在这种情况下,至少两个柔性管)的流体耦合。由于引起流弹性不稳定的机理的性质,纯粹的实验或不稳定的确定将需要大量的实验工作。作为实验工作量和预测准确性之间的折衷,在本研究中使用了拟稳态模型。在目前的工作中,先前测得的准稳态和非稳态力用于估算振荡管的位移与自身产生的力之间的时间延迟,然后估算中心振荡管的位移与所产生的力之间的时间延迟。在相邻的管子上。然后,将估计的时间延迟与阻力系数和导数一起使用,以预测经受两相流的P / D = 1.5的旋转三角管阵列中的面内流体弹性不稳定性。结果紧密地复制了动态测试结果,并证实了刚度控制机制的优势以及准稳态模型在准确预测经受两相流的阵列中的流向流体弹性不稳定性方面的潜力。

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