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OPTIMAL APPLICATION OF RIBLETS ON COMPRESSOR BLADES AND THEIR CONTAMINATION BEHAVIOR

机译:压条在压缩机叶片上的最佳应用及其污染行为

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During the last decades, riblets have shown a potential for viscous drag reduction in turbulent boundary layers. Several investigations and measurements of skin-friction in the boundary layer over flat plates and on turbomachinery type blades with ideal riblet geometry have been reported in the literature. The question where riblets must be applied on the surface of a compressor blade is still not sufficiently answered. In a first step, the profile loss reduction by ideal triangular riblets with a trapezoidal groove and a constant geometry along the surface on the suction and pressure side of a compressor blade is investigated. The results show a higher potential on the profile loss reduction by riblets on the suction side. In a second step, the effect of laser-structured ribs on the laminar separation bubble and the influence of these structures on the laminar boundary layer near the leading edge are investigated. After clarifying the best choices where riblets should be applied on the blade surface, a strategy for locally adapted riblets is presented. The suction side of a compressor blade is laser-structured with a segmented riblet-like structure with a constant geometry in each segment. The measured profile loss reduction shows the increasing effect on the profile loss reduction of this locally adapted structure compared to a constant riblet-geometry along the surface. Furthermore, the particle deposition on a riblet-structured compressor blade is investigated and compared to the particle deposition on a smooth surface. Results show a primary particle deposition on the riblet tips followed by an agglomeration. The particle deposition on the smooth surface is stochastic.
机译:在过去的几十年中,肋骨在湍流边界层中显示出降低粘性阻力的潜力。文献中已经报道了在平板上的边界层上以及具有理想的肋状几何形状的涡轮机械型叶片上的皮肤摩擦的一些研究和测量。仍然必须充分回答必须在压缩机叶片的表面上施加肋条的问题。第一步,研究通过理想的三角形肋减少轮廓损失,该三角形肋具有梯形凹槽,并且沿压缩机叶片的吸力和压力侧的表面具有恒定的几何形状。结果表明,通过吸入侧的肋状结构降低轮廓损失的可能性更高。在第二步中,研究了激光结构的肋对层流分离气泡的影响以及这些结构对靠近前缘的层流边界层的影响。在明确了在叶片表面应使用肋骨的最佳选择之后,提出了一种局部适应肋骨的策略。压气机叶片的吸入侧采用分段结构的肋状结构进行激光结构化,在每个段中具有恒定的几何形状。与沿着表面的恒定肋状几何形状相比,所测得的轮廓损失减小显示出了对该局部适应的结构的轮廓损失减小的增加的影响。此外,研究了在肋状结构的压缩机叶片上的颗粒沉积,并将其与光滑表面上的颗粒沉积进行了比较。结果表明,初级颗粒在肋骨尖端上沉积,随后发生团聚。颗粒在光滑表面上的沉积是随机的。

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