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Dynamics of the Turbidity Maxima in the Upper Humber Estuary System, UK

机译:英国上亨伯河口系统浊度最大值的动力学

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Turbidity maxima in estuaries are important due to their influence on primary production, pollutant flushing, fish migration and dredging. There is a need for a better understanding of the dynamics of turbidity maxima. Results are given for the response of turbidity maxima and salinity in the tidal Trent and (Yorkshire) Ouse over time scales of a semidiurnal tide to an annual cycle with respect to tidal and fluvial influences. Under low fresh water flow conditions sediment moves landward and the turbidity maximum is observed upstream of the fresh-salt water interface. Longitudinal dispersion processes governing salinity appear to be dominated by transverse shear induced effects. Suspended solids concentrations within the turbidity maximum are strongly influenced by tidal asymmetry and suspended solids vertical concentration gradient effects and their associated influences. It is proposed that the higher concentrations of suspended solids in the Ouse estuary, compared with the tidal Trent, are due to the influence of the lower fluvial discharge in the appropriate reaches.
机译:河口的最大浑浊度很重要,因为它们会影响初级生产,冲洗污染物,鱼类迁移和疏ed。需要更好地了解最大浊度的动力学。给出了关于潮汐和河流影响的半日潮时间尺度上潮汐Trent和(约克郡)Ouse的浊度最大值和盐度响应对年周期的响应的结果。在淡水流量低的情况下,沉积物向陆地移动,并且在淡盐水界面的上游观察到最大的浊度。控制盐度的纵向弥散过程似乎受横向剪切诱导的作用支配。浊度最大值内的悬浮固体浓度受潮汐不对称性和悬浮固体垂直浓度梯度效应及其相关影响的强烈影响。有人提出,与潮汐特伦特河相比,乌斯河河口的悬浮固体浓度较高,是由于适当河段的河水排放量较低所致。

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