° double bend pipe with and without inlet swirl'/> Experimental Investigation of Two-Dimensional Velocity on the 90° Double Bend Pipe Flow Using Ultrasound Technique
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Experimental Investigation of Two-Dimensional Velocity on the 90° Double Bend Pipe Flow Using Ultrasound Technique

机译:超声技术对90°双弯管流动二维速度的实验研究

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An experimental investigation was performed to investigate two-dimensional axial velocity field at downstream of the 90 style="white-space:nowrap;">° double bend pipe with and without inlet swirling condition. The main objectives are to find separation region and observe the influence of inlet swirling flow on the velocity fluctuation using ultrasound technique. The experiments were carried out in the pipe at Reynolds number Re = 1 × 104. In case of inlet swirling flow condition, a rotary swirler was used as swirling generator, and the swirl number was setup S = 1. The ultrasonic measurements were taken at four downstream locations of the second bend pipe. Phased Array Ultrasonic Velocity Profiler (Phased Array UVP) technique was applied to obtain the two-dimensional velocity of the fluid and the axial and tangential velocity fluctuation. It was found that the secondary reverse flow became smaller at the downstream from the bend when the inlet condition on the first bend was swirling flow. In addition, inlet swirling condition influenced mainly on the tangential velocity fluctuation, and its maximum turbulence intensity was 40%.
机译:进行了一个实验研究,以研究带有和不带有进气涡流条件的90°双弯管下游的二维轴向速度场。其主要目的是利用超声技术找到分离区域并观察入口涡流对速度波动的影响。实验在雷诺数Re = 1×10 4 的管道中进行。在进入旋流的情况下,使用旋流器作为旋流发生器,旋流数设置为 S = 1。在第二弯管的四个下游位置进行超声测量。应用相控阵超声速度廓线仪(Phased Array UVP)技术获得流体的二维速度以及轴向和切向速度波动。已发现,当第一个弯头的入口条件为旋流时,二次弯流在弯头的下游变小。另外,进气涡流条件主要影响切向速度波动,其最大湍流强度为40%。

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