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首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Longitudinal dispersion coefficient for mixing in open channel flows with submerged vegetation
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Longitudinal dispersion coefficient for mixing in open channel flows with submerged vegetation

机译:纵向分散系数与浸没植被混合的纵向分散系数

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An experimental investigation was conducted to analyze the flow and pollutant mixing characteristics in the vegetated channel, in which the velocity data was collected by micro acoustic Doppler velocimeter, and pollutant dispersion data was obtained through tracer tests in an open channel with submerged vegetation. The effects of submergence ratio (S-r = 2.0-3.5), and stem density (M = 0.4-5.9) on the vertical distribution of the stream-wise velocity and the turbulent shear stress were analyzed. The results of the flow experiments showed that the intensity of velocity deviation became larger with increasing stem density and decreasing submergence ratio. The turbulent shear stress at the exchange zone also increased with submergence ratio, as well as with increasing stem density. The calculation results of the longitudinal dispersion coefficient based on the vertical velocity profile data showed that as the submergence ratio and stem density increased, the dispersion coefficients increased linearly. This monotonic increase of the velocity-based dispersion coefficient differed from former research, in which concentration-based dispersion coefficient values approached a constant value in a higher submergence ratio of over 2. Comparison of the velocity-based longitudinal dispersion coefficients with concentration-based coefficients in this research demonstrated that the velocity-driven coefficient had a linear relation with the concentration-driven coefficients, with smaller values than the concentration-based dispersion. This difference can be explained by the fact that concentration-driven dispersion coefficient included the storage effects due to the submerged vegetation, while the velocity-driven coefficient only accounted for shear flow effects.
机译:进行了实验研究以分析植被通道中的流动和污染物混合特性,其中通过微观声学多普勒速度计收集速度数据,通过具有浸没植被的开放通道中的示踪试验获得污染物分散数据。分析了淹没比率(S-R = 2.0-3.5)的影响,以及茎密度(m = 0.4-5.9)对流速度和湍流剪切应力的垂直分布。流动实验的结果表明,随着茎密度的增加和淹没率降低,速度偏差的强度变大。交换区处的湍流剪切应力也随血浆比率而增加,以及随着茎密度的增加。基于垂直速度分布数据的纵向分散系数的计算结果表明,随着淹没比率和茎密度增加,分散系数线性增加。这种单调的基于速度的分散系数与以前的研究不同,其中基于浓度的分散系数值以较高的潜水比率接近恒定值。基于浓度的系数的速度基纵向分散系数比较在该研究中,证明速度驱动的系数与浓度驱动的系数具有线性关系,具有比浓度的分散体更小的值。这种差异可以通过:浓缩驱动的分散系数包括由于浸没的植被而包括储存效果,而速度驱动的系数仅占剪切流量效果。

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