Experimental Study of Boundary Layer flow over a Zero Pressure Gradient Convergent Riblet Plate

Elmukashfi Osman, L. Zuhal, B. Nugroho
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Abstract

Reducing the friction force in turbulence flows is an important research topic in fluid mechanics. Shark skin has less drag than smooth skins, therefore shark skin surfaces have been widely used. However, some turbulence mechanisms are not completely understood and the drag reduction mechanism of real shark skin has not been thoroughly understood. Many researchers have experimentally studied bio-inspired riblet surfaces to explain some specified phenomena for the sharkskin drag reduction effect. The objectives of this study were to investigate the effect of the converging-diverging riblet-type surface roughness on a zero pressure gradient turbulent boundary layers, to investigate the effect of the surface roughness on the large-scale features and to confirm that converging-diverging riblet generate large-scale counter-rotating vortices. The wind tunnel experiments involved laminar and turbulent flow at various Re were performed. Hot-wire anemometry was used to investigate near-wall flow structure over smooth and riblet surfaces. The results showed that the convergent riblet plate significantly impacted the boundary layer properties. Furthermore, the turbulent skin friction drag over the convergent riblet was higher than on a smooth surface. The results agree well with previous studies.
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零压力梯度辐合纹板边界层流动的实验研究
减小湍流中摩擦力是流体力学的一个重要研究课题。鲨鱼皮比光滑的皮肤阻力小,因此鲨鱼皮表面被广泛使用。然而,一些湍流机制尚未完全了解,真实鲨鱼皮的减阻机制尚未完全了解。许多研究人员通过实验研究仿生纹表面来解释鲨鱼皮减阻效应的一些特定现象。本研究的目的是研究会聚-散纹型表面粗糙度对零压力梯度湍流边界层的影响,研究表面粗糙度对大尺度特征的影响,并证实会聚-散纹产生大尺度反旋转涡。进行了不同Re下的层流和紊流风洞实验。采用热线风速法研究了光滑表面和波纹表面上的近壁流动结构。结果表明,会聚肋板对边界层性能有显著影响。此外,紊流表面摩擦阻力在会聚条纹上比在光滑表面上要大。研究结果与之前的研究结果一致。
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