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Effect of particle concentration on sediment and turbulent diffusion coefficients in open-channel turbulent flow

机译:颗粒浓度对明渠湍流中泥沙和湍流扩散系数的影响

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摘要

To achieve a complete knowledge about the effect of particle concentration on sediment and turbulent diffusion coefficients in open-channel turbulent flow is a long-standing problem for the community of researchers. The effect of particle concentration is investigated on the sediment and turbulent diffusion coefficients through the inverse of turbulent Schmidt number or beta which is defined by the ratio of sediment diffusion coefficient to turbulent diffusion coefficient. It is observed that with increasing particle concentration, the sediment diffusion coefficient decreases more in comparison with the turbulent diffusion coefficient for both dilute and non-dilute sediment-laden flows. The physical characteristics of b observed are expressed mathematically in terms of normalized settling velocity, reference level and reference concentration. The applicability of the mathematical formulae is confirmed by the agreement analysis between experimental data and particle concentration profile computed from the Rouse equations modified through the newly proposed expression of b. Apart from the better agreement between dilute particle concentration data and the developed Rouse equation, the striking observation is that the modified Rouse equation shows reasonable computational accuracy for non-dilute particle concentration data also. Minimum error is obtained from the present model when it is compared with the models proposed by the previous researchers.
机译:要获得有关颗粒浓度对明渠湍流中沉积物和湍流扩散系数影响的完整知识,对于研究人员来说是一个长期存在的问题。通过湍流施密特数或β的倒数研究了颗粒浓度对沉积物和湍流扩散系数的影响,后者由沉积物扩散系数与湍流扩散系数之比定义。可以看出,随着颗粒浓度的增加,与稀有和非稀有泥沙流的湍流扩散系数相比,泥沙扩散系数的下降幅度更大。观测到的b的物理特性用归一化的沉降速度,参考水平和参考浓度数学表示。数学公式的适用性通过实验数据和通过新提出的b表达式修改的Rouse方程计算出的颗粒浓度分布之间的一致性分析得到证实。除了在稀颗粒浓度数据和已开发的Rouse方程之间有更好的一致性外,引人注目的观察结果是,改进的Rouse方程对于非稀颗粒浓度数据也显示出合理的计算精度。将其与以前的研究人员提出的模型进行比较时,可以从本模型中获得最小误差。

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