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首页> 外文期刊>Environmental fluid mechanics >Mass exchange in a shallow channel flow with a series of groynes: LES study and comparison with laboratory and field experiments
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Mass exchange in a shallow channel flow with a series of groynes: LES study and comparison with laboratory and field experiments

机译:一系列防波堤在浅通道水流中的质量交换:LES研究以及与实验室和田间实验的比较

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摘要

The exchange of dissolved matter between a straight open channel and a series of shallow embayments present at one of its sides is investigated using large eddy simulation (LES). The direct link between the mechanism of mass exchange and the dynamics of coherent structures is demonstrated. It is shown that for the geometrical configuration considered in the present study, the mass exchange process is very non-uniform over the depth in the vicinity of the channel-embayment interface. Most of the contaminant is ejected from the embayments close to the free surface. The amount of contaminant re-entrained into the embayments situated downstream of the one in which contaminant was introduced is quantified. The mass exchange coefficient predicted by LES does not vary significantly with the embayment rank and is in very good agreement with the one predicted by the model proposed by Weitbrecht et al. (J Hydraul Eng 134(2):173-183, 2008) based on the value of a dimensionless morphometric groyne-field parameter. Field experiments were purposely performed in a natural stream with embayments whose length over width ratios were close to the ratio in the LES study. The concentration fields predicted by LES are compared with video-records of colored dye used to visualize the mass exchange in the field experiment. It is shown that, for both LES and the field experiment, the dominant passage frequency of the eddies inside the interfacial mixing layer is well predicted by the analytical model of Sukhodolov and Sukhodolova (in: Cowen et al (eds) Hydraulic measurements & experimental methods. Proceedings of international conference, Lake Placid, USA, pp 172-177, 2007). The model is then used to scale the time in the LES animations and field video-records showing the temporal evolution of the concentration field. The results of the comparison indicate several similarities in the mixing process, despite the differences in the bathymetry and the large difference in the Reynolds number between LES and the field experiment. This proves the usefulness of performing detailed LES and laboratory studies in well-controlled environments to understand mass-exchange processes around river groyne fields.
机译:使用大涡模拟(LES)研究了直通道和一系列浅水通道之间的溶质交换。证明了质量交换机制与相干结构动力学之间的直接联系。结果表明,对于本研究中考虑的几何构型,质量交换过程在通道-嵌入界面附近的整个深度上非常不均匀。大多数污染物是从靠近自由表面的隔室中排出的。量化重新夹带进入位于其中引入了污染物的下游的隔间中的污染物的量。 LES预测的质量交换系数不会随嵌入度的变化而显着变化,并且与Weitbrecht等人提出的模型所预测的质量交换系数非常吻合。 (J Hydraul Eng 134(2):173-183,2008)基于无量纲形态学波罗尼场参数的值。有目的地在天然溪流中进行野外实验,其巢穴的长宽比接近LES研究中的比率。将LES预测的浓度场与有色染料的视频记录进行比较,该记录用于可视化田间实验中的质量交换。结果表明,对于LES和现场实验而言,通过Sukhodolov和Sukhodolova的分析模型可以很好地预测界面混合层内部涡流的主要通过频率(见Cowen等(eds)水力测量和实验方法) (国际会议录,美国普莱西德湖,第172-177页,2007年)。然后,使用该模型对LES动画和现场视频记录中的时间进行缩放,以显示浓度场的时间演变。比较结果表明,尽管测深法存在差异,LES与野外实验之间的雷诺数存在较大差异,但混合过程仍存在一些相似之处。这证明了在控制良好的环境中进行详细的LES和实验室研究以了解河堤区域周围的质量交换过程的有用性。

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