首页> 外文期刊>Journal of biomechanical engineering. >Laser-Doppler measurements of velocities just downstream of a collapsible tube during flow-induced oscillations.
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Laser-Doppler measurements of velocities just downstream of a collapsible tube during flow-induced oscillations.

机译:在流动引起的振荡过程中,激光多普勒测量可折叠管下游的速度。

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摘要

The flow field less than one diameter downstream of the end of a collapsible tube executing self excited oscillations was examined using a two-component fiber-optic laser-Doppler anemometer. The time-averaged Reynolds number of the flow was 11,000. With the tube oscillating periodically, results obtained during many cycles of oscillation were combined to yield surface plots of the axial component over the cross section at 16 phases of the cycle. By combining measurements obtained with the laser probe in two different orientations, secondary flow vectors over the cross section were likewise constructed for 16 phases. The measurements showed strongly phasic turbulence intensity, with the phase of high intensity coinciding with the time of maximal tube collapse. Reverse flow occurred during much of the cycle, at places in the cross section that agree with our previous observations of laminar and turbulent steady flow through a rigid simulated collapsed tube.
机译:使用两组分光纤激光多普勒风速计检查了执行自激振荡的可折叠管末端下游小于一个直径的流场。该流的时间平均雷诺数为11,000。在管周期性振动的情况下,将在许多振动周期中获得的结果组合起来,得出轴向分量在该周期的16个阶段的横截面上的表面图。通过结合使用激光探针在两个不同方向上获得的测量结果,同样可以为16个相构建横截面上的次级流矢量。测量结果显示出强烈的相位湍流强度,高强度的相位与最大的管塌陷时间一致。在循环的大部分时间内,在横截面上的位置发生了逆流,这与我们先前对通过刚性模拟塌缩管的层流和湍流稳定流的观察一致。

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