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首页> 外文期刊>International Journal of Heat and Fluid Flow >Statistical properties of wall shear stress fluctuations in turbulent channel flows
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Statistical properties of wall shear stress fluctuations in turbulent channel flows

机译:湍流通道内壁剪应力波动的统计特性

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Instantaneous velocity and wall shear stress measurements are conducted in a turbulent channel flow in the Karman number range of Re_τ = 74-400. A one-dimensional LDA system is used to measure the streamwise velocity fluctuations, and an electrochemical technique is utilized to measure the instantaneous wall shear stress. For the latter, frequency response and nonuniform correction methods are used to provide an accurate, well-resolved wall statistics database. The Reynolds number dependency of the statistical wall quantities is carefully investigated. The corrected relative wall shear stress fluctuations fit well with the best DNS data available and meet the need for clarification of the small discrepancy observed in the literature between the experimental and numerical results of such quantities. Higher-order statistics of the wall shear stress, spectra, and the turbulence kinetic energy budget at the wall are also investigated. The present paper shows that the electrochemical technique is a powerful experimental method for hydrodynamic studies involving highly unsteady flows. The study brings with it important consequences, especially in the context of the current debate regarding the appropriate scaling as well as the validation of new predictive models of near-wall turbulence.
机译:在卡门数范围Re_τ= 74-400的湍流通道中进行瞬时速度和壁面剪应力测量。一维LDA系统用于测量流向速度波动,电化学技术用于测量瞬时壁面剪应力。对于后者,频率响应和非均匀校正方法用于提供准确的,解析度高的墙统计数据库。仔细研究统计墙数量的雷诺数依赖性。校正后的相对壁剪应力波动非常适合现有的最佳DNS数据,并且满足澄清此类量的实验结果和数值结果之间文献中观察到的细微差异的需要。还研究了壁的剪应力,频谱和湍流动能收支的高阶统计量。本文表明,电化学技术是涉及高度不稳定流动的流体力学研究的有力实验方法。这项研究带来了重要的后果,尤其是在当前有关适当缩放比例的辩论以及新近壁湍流预测模型的验证的背景下。

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