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Effects of energetic coherent motions on the power and wake of an axial-flow turbine

机译:高能相干运动对轴流式涡轮机功率和尾流的影响

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A laboratory experiment examined the effects of energetic coherent motions on the structure of the wake and power fluctuations generated by a model axial-flow hydrokinetic turbine. The model turbine was placed in an open-channel flow and operated under subcritical conditions. The incoming flow was locally perturbed with vertically oriented cylinders of various diameters. An array of three acoustic Doppler velocimeters aligned in the cross-stream direction and a torque transducer were used to collect high-resolution and synchronous measurements of the three-velocity components of the incoming and wake flow as well as the turbine power. A strong scale-to-scale interaction between the large-scale and broadband turbulence shed by the cylinders and the turbine power revealed how the turbulence structure modulates the turbine behavior. In particular, the response of the turbine to the distinctive von Karman-type vortices shed from the cylinders highlighted this phenomenon. The mean and fluctuating characteristics of the turbine wake are shown to be very sensitive to the energetic motions present in the flow. Tip vortices were substantially dampened and the near-field mean wake recovery accelerated in the presence of energetic motions in the flow. Strong coherent motions are shown to be more effective than turbulence levels for triggering the break-up of the spiral structure of the tip-vortices. (C) 2015 AIP Publishing LLC.
机译:实验室实验检查了高能相干运动对模型结构和轴流流体动力涡轮产生的尾流结构和功率波动的影响。模型涡轮机置于明渠中,并在亚临界条件下运行。流入的流被各种直径的垂直定向的圆柱体局部扰动。沿横流方向排列的三个声学多普勒测速仪阵列和一个扭矩传感器用于收集进水流和尾水流的三个速度分量以及涡轮功率的高分辨率和同步测量值。汽缸散发的大型湍流和宽带湍流与涡轮机功率之间的强大的比例到比例的相互作用揭示了湍流结构如何调节涡轮机的性能。尤其是,涡轮机对从气缸中喷出的独特的冯·卡门型涡流的反应突出了这一现象。涡轮机尾流的平均和波动特性对流动中存在的高能运动非常敏感。在流动中存在高能运动时,尖端涡流被显着抑制,近场平均尾流恢复得到加速。强烈的连贯运动显示出比湍流水平更有效,可以触发尖端涡旋的螺旋结构破裂。 (C)2015 AIP Publishing LLC。

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