首页> 外文会议>International Symposium on Fluid-structure interactions, aeroelasticity, flow-induced vibration and noise >Fluid-elastic force measurements acting on a tube bundle in two-phase cross flow (Fluid-elastic forces acting on the oscillated tube and tubes surrounding the oscillated tube)
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Fluid-elastic force measurements acting on a tube bundle in two-phase cross flow (Fluid-elastic forces acting on the oscillated tube and tubes surrounding the oscillated tube)

机译:采用在两相交叉流动的管束上的流体弹性力测量(作用在振荡管上的流体 - 弹性力)

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Fluid-elastic forces acting on a square tube bundle (P/D = 1.42) in air-water two-phase cross flow were considered experimentally. A tube in the tube bundle was oscillated in the direction perpendicular as well as parallel to the two-phase flow,and fluid elastic forces acting on the oscillated tube as well as tubes surrounding the oscillated tube were measured. Measured fluid elastic forces were separated into coefficients of acceleration, velocity, and displacement of the oscillated tube, andthe coefficients were nondimensionalized with two-phase mixture characteristics, which were obtained using the drift-flux model. It was found that the fluid elastic force coefficients could collapse very well as a function of void fraction and/ornondimensional gap velocity. These coefficients were used to estimate the critical gap velocity of fluid elastic vibration. The results agreed qualitatively with previous experimental results of Nakamura et al. (1986a,b).
机译:实验考虑了在空气水两相交叉流动的方形管束(P / D = 1.42)上的流体弹性力。管束中的管在垂直的方向上振荡,垂直于两相流量,并且测量作用在振荡管上的流体弹性力以及围绕振荡管的管。测量的流体弹性力分离成振荡管的加速度,速度和位移系数,并且系数用两相混合特性进行了一种,使用漂移通量模型获得。发现流体弹性力系数可以作为空隙级分和/ ornymensional间隙速度的函数崩溃。这些系数用于估计流体弹性振动的临界间隙速度。结果与Nakamura等人的先前实验结果进行了定性。 (1986A,B)。

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