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Numerical simulation of the effects of passive flow control techniques on hydrodynamic performance improvement of the hydrofoil

机译:被动流量控制技术对水翼水动力性能改善影响的数值模拟

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Efficient hydrofoil design is a massive challenge for the current turbine blade designers. Flow separation on the suction side of the hydrofoil reduces the hydrodynamic performance of the current turbine. In this paper, the combined effects of dimple with vortex generators and dimple with tubes on S1210 hydrofoil is numerically studied and compared with baseline hydrofoil. The lift coefficient values increased at a higher angle of attack, and the stall angle is delayed from 10 degrees to 12 degrees. Maximum glide ratio increments are 132% and 144% at an angle of attack of 12 degrees for outward dimple with tubes and outward dimple with vortex generators respectively. The findings will be helpful to design a stronger blade profile for the current turbine.
机译:有效的水翼设计对当前的涡轮叶片设计者来说是巨大的挑战。在水翼的吸入侧进行分流会降低当前涡轮的水动力性能。本文通过数值模拟研究了带涡流发生器的酒窝和带管的酒窝对S1210水翼的综合作用,并与基线水翼进行了比较。升力系数值在较高的迎角下增加,并且失速角从10度延迟到12度。对于带有管的向外凹坑和带有涡流发生器的向外凹坑,在12度的迎角下,最大滑移率增量分别为132%和144%。这些发现将有助于为当前涡轮设计更坚固的叶片轮廓。

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