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首页> 外文期刊>Journal of Fluid Mechanics >Influence of a drag-reducing surfactant on a turbulent velocity field
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Influence of a drag-reducing surfactant on a turbulent velocity field

机译:减阻表面活性剂对湍流场的影响

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A two-component laser-Doppler velocimeter, with high spatial and temporal resolution, was used to study how the introduction of a drag-reducing surfactant to water changes the fully-developed velocity field in an enclosed rectangular channel. Measurements were made for four different Reynolds numbers, Re = 13 300, 19 100, 32 000, and 49 100 (based on the bulk viscosity, the half-height of the channel, and the viscosity of water). For a fixed volumetric flow the pressure drop was reduced by 62 to 76% when compared to a Newtonian flow with an equal wall viscosity. Measurements were made of the mean streamwise velocity, the root mean square of two components of the fluctuating velocity, the Reynolds shear stress and the spectral density function of the fluctuating velocity in the streamwise direction. The Reynolds shear stress is found to be zero over the whole channel and the spectra of the streamwise velocity fluctuations show a sharp cutoff at a critical frequency, f_c. The ratio of the cutoff frequency to the root mean square of the streamwise velocity fluctuations is found to be approximately equal to 1 mm~(-1). The observation of a zero Reynolds shear stress indicates the existence of additional mean shear stresses (or mean transfers of momentum) that are not seen with a Newtonian fluid. Furthermore, the presence of a random fluctuating velocity field suggests a production of turbulence by a mechanism other than that usually found for a fully developed flow. Possible explanations for this behaviour are presented.
机译:使用具有高空间和时间分辨率的两组分激光多普勒测速仪,研究了将减阻表面活性剂引入水中如何改变封闭矩形通道中充分发展的速度场。对四个不同的雷诺数进行了测量,Re = 13 300、19 100、32 000和49 100(基于总粘度,通道的半高和水的粘度)。对于固定体积流量,与具有相同壁粘度的牛顿流量相比,压降降低了62%至76%。测量了平均水流速度,脉动速度两个分量的均方根,雷诺剪切应力和水流方向的脉动速度的频谱密度函数。发现在整个通道上,雷诺剪切应力为零,并且在临界频率f_c处,流向速度波动的频谱显示出急剧的截止。发现截止频率与流速速度波动的均方根之比大约等于1 mm〜(-1)。零雷诺剪切应力的观察结果表明,存在牛顿流体中看不到的其他平均剪切应力(或动量平均传递)。此外,随机波动速度场的存在表明湍流的产生是通过不同于通常为充分发展的流动所发现的机制而产生的。提供了对此行为的可能解释。

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