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Feasibility of Velocity-Based Method for Transverse Mixing Coefficients in River Mixing Analysis

机译:基于速度的方法进行河流混合分析中的横向混合系数的可行性

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The feasibility of using the velocity-based method for calculating the transverse mixing coefficient of the two-dimensional contaminant transport model was studied to substitute the concentration-based method in which the mixing coefficient is calculated from the concentration curves obtained via the costly tracer experiment. To calculate the transverse mixing coefficients, the hydraulic data and concentration data of the electric conductivity (EC) were collected at the confluence of tributary rivers in the Nakdong River, South Korea. The experimental results showed that the transverse mixing was controlled by secondary currents that were caused by the merging of the tributary rivers as well as the meandering of the main channel in the study area. The comparison of the flow-weighted transverse mixing coefficients estimated from velocity measurements with values estimated from concentration measurements revealed that a linear relationship with a fitted slope of 1.310 was found between the two values. This discrepancy occurred because the velocity-based method contains only shear effects due to the vertical velocity deviation, while the concentration-based method embraces other mixing effects, such as channel irregularities, storage zone effects, and turbulent diffusion, as well as the shear effect.
机译:研究了使用基于速度的方法来计算二维污染物迁移模型的横向混合系数的可行性,以替代基于浓度的方法,该方法是根据通过昂贵的示踪剂实验获得的浓度曲线来计算混合系数的。为了计算横向混合系数,在韩国那东河支流汇合处收集了水力数据和电导率(EC)的浓度数据。实验结果表明,横向混合是由支流汇流以及研究区主河道的蜿蜒引起的二次流控制的。从速度测量估算的流量加权横向混合系数与从浓度测量估算的值的比较表明,两个值之间的拟合斜率为1.310,呈线性关系。之所以出现这种差异,是因为基于速度的方法仅包含垂直速度偏差引起的剪切效应,而基于浓度的方法还包含其他混合效应,例如通道不规则性,存储区效应和湍流扩散以及剪切效应。

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