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首页> 外文期刊>Chinese journal of mechanical engineering >TWO-DIMENSIONAL PARTICLE IMAGE VELOCIMETRY(PIV) MEASUREMENTS IN A TRANSPARENT CENTRIFUGAL PUMP
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TWO-DIMENSIONAL PARTICLE IMAGE VELOCIMETRY(PIV) MEASUREMENTS IN A TRANSPARENT CENTRIFUGAL PUMP

机译:透明离心泵中的二维颗粒图像测速(PIV)测量

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摘要

A special transparent centrifugal pump is designed. Detailed optical measurements of the flow inside the rotating passages of a five-bladed shroud centrifugal pump impeller have been performed by using two-dimensional particle image velocimetry (PIV). The flow is surveyed at three load conditions q_V/q_(Vd) = 0.4, q_V/q_(Vd) = 1.0, q_V/q_(Vd) = 1.5, respectively. As a result, phase averaged PIV velocity vector maps on three planes between hub and shroud of the impeller are presented. At design load, the mean field of relative velocity is predominantly vane congruent, showing well-behaved flow without separation. The distributions of the relative velocity on different plane along the pump shaft are very different and there is always a low velocity zone near the pressure-side of the blade at both low and design flow rate, but the low-velocity-zone at the low flow rate is much larger than that at the design one. The study demonstrates that the PIV technique is efficient in providing reliable and detailed velocity data over a full impeller passage.
机译:设计了一种特殊的透明离心泵。使用二维粒子图像测速仪(PIV)对五叶罩式离心泵叶轮的旋转通道内部的流动进行了详细的光学测量。在三个负载条件下分别测量流量q_V / q_(Vd)= 0.4,q_V / q_(Vd)= 1.0,q_V / q_(Vd)= 1.5。结果,给出了在叶轮的轮毂和护罩之间的三个平面上的相位平均PIV速度矢量图。在设计载荷下,相对速度的平均场主要是叶片一致的,表现出行为良好且没有分离。沿泵轴在不同平面上的相对速度分布有很大不同,在低流量和设计流量下,叶片压力侧附近总是有一个低速区,而在低流量时总是有一个低速区。流量比设计流量大得多。该研究表明,PIV技术可有效地提供整个叶轮通道内可靠且详细的速度数据。

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