首页> 外文会议>ASME Fluids Engineering Division summer meeting >ENHANCEMENT OF TURBULENT SHEAR STRESS AND MASS TRANSFER IN WALL TURBULENCE ACCOMPANIED WITH WALL BLOWING
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ENHANCEMENT OF TURBULENT SHEAR STRESS AND MASS TRANSFER IN WALL TURBULENCE ACCOMPANIED WITH WALL BLOWING

机译:壁流伴随壁湍流的湍流剪切应力和传质的增强

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Spatial distribution of velocity and mass concentration fluctuation in turbulent channel flow with wall blowing were simultaneously measured by PIV/PLIF. The recorded pictures were analyzed to clarify the turbulent momentum and mass transfer from statistical view point and from spatial evolution of coherent eddy structure. Experimental result revealed that the Reynold shear stress and turbulent intensity are enhanced as the blowing rate increasing. On the other hand, structural parameters based on local turbulence such as turbulent Schmidt number and a degree of turbulent anisotropy is not affected by wall blowing. In comparison without wall blowing, we found that the turbulent eddy structure locates apart from the wall. Besides, energy spectrum and swirling strength is also enhanced by wall blowing. It is associated with increase of resistance by wall blowing. Generally in wall turbulence, fluctuation motions are restricted by the presence of solid wall. But for the blowing from the wall relaxes this restriction and Reynolds shear stress is enhanced, which leads to enhancement of turbulent mass flux. Moreover, from results of spatial distribution of instantaneous fields, wall-blowing helps development of hairpin vortexes. It is concluded that development of hairpins leads to enhancement of turbulent mass transfer.
机译:用PIV / PLIF同时测量了壁吹作用下湍流通道中速度和质量浓度波动的空间分布。从统计角度和相干涡结构的空间演化角度分析了记录的图像,以弄清湍流动量和传质。实验结果表明,随着吹速的增加,雷诺剪切应力和湍流强度增加。另一方面,基于局部湍流的结构参数例如湍流施密特数和湍流各向异性程度不受壁吹影响。与没有吹墙的情况相比,我们发现湍流的涡流结构与墙分开。此外,壁吹还提高了能谱和涡旋强度。它与吹墙引起的阻力增加有关。通常,在壁湍流中,波动运动受固体壁的存在的限制。但是,由于从壁上吹来的气流放松了这一限制,雷诺剪切应力得到了增强,从而导致了湍流质量通量的增加。此外,从瞬时场的空间分布结果来看,吹壁有助于发夹旋涡的发展。结论是发夹的发展导致湍流传质的增强。

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