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首页> 外文期刊>Journal of Hydraulic Engineering >Spatially Variable Dispersion Coefficients in Meandering Channels
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Spatially Variable Dispersion Coefficients in Meandering Channels

机译:弯曲通道中的空间可变色散系数

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摘要

To analyze the spatial variability of two-dimensional dispersion coefficients in meandering channels, an observed dispersion tensor was calculated by applying a theoretical equation to the measured velocity profiles of two laboratory channels. From the observed dispersion tensor, local longitudinal and transverse dispersion coefficients were estimated by the least squares method. In both channels, the spatial variation in the dispersion coefficients was found to be strongly dependent on the specific location within the channel, because alternating bends in channels induces the periodic generation of secondary currents that alter the magnitude of transverse dispersion. Dimensionless transverse dispersion coefficients of each measurement section vary from 0.33 to 1.14 for the Ml channel and from 0.63 to 3.40 in the M2 channel around the entrance and apex of the second bend. The maximum negative correlation occurred near the apex of the channels because of the separation of the point of maximum primary velocity and the center of the circulation cells by the complex flow structure in the meandering channel.
机译:为了分析蜿蜒通道中二维色散系数的空间变异性,通过将理论方程应用于两个实验室通道的测得速度分布,计算了观察到的色散张量。从观察到的弥散张量,通过最小二乘法估计局部纵向和横向弥散系数。在这两个通道中,发现色散系数的空间变化很大程度上取决于通道内的特定位置,因为通道中的交替弯曲会引起周期性产生次级电流,从而改变横向色散的幅度。对于M1通道,每个测量部分的无量纲横向色散系数在0.33至1.14之间变化,并且在第二弯曲的入口和顶点附近的M2通道中在0.63至3.40之间变化。最大负相关出现在通道的顶点附近,这是因为最大初级速度的点和循环池中心被弯曲通道中的复杂流动结构所分开。

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