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Investigation of hydraulics transport time scales within the Arvand River estuary, Iran

机译:伊朗阿凡德河河口内水力运输时标的调查

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摘要

Transport time scales are key parameters for understanding the hydrodynamic and biochemical processes within estuaries. In this study, the flushing and residence times within the Arvand River estuary have been estimated using a two-dimensional hydrodynamic model called CE-QUAL-W2. The model has been calibrated and verified by two different sets of field data and using the k-e vertical eddy diffusivity scheme. Flushing time has been estimated using different methods such as the tidal prism and fraction of freshwater methods. Moreover, residence times have been investigated using pulse residence time, estuarine residence time and remnant function approaches. The results have shown that different methods yield different time scales, and freshwater inflow has the greatest impact upon estimation of residence time, whereas tidal circulation hardly contributes to residence time at all. It has also been shown that the neap-spring circulation and start phase of simulations have negligible effects on the Arvand's time scales. The investigation of bathymetry showed that two sills of the estuary tend to significantly increase residence time. Understanding the applicability of these time scales and their estimation approaches helps us to evaluate the water quality management of estuaries.
机译:运输时间尺度是了解河口内水动力和生化过程的关键参数。在这项研究中,使用称为CE-QUAL-W2的二维流体动力学模型估算了Arvand河口内的冲刷和停留时间。该模型已通过两组不同的现场数据并使用k-e垂直涡流扩散率方案进行了校准和验证。使用潮汐棱镜和淡水分离方法等不同方法可以估算冲洗时间。此外,已经使用脉冲停留时间,河口停留时间和残余功能方法研究了停留时间。结果表明,不同的方法产生不同的时间尺度,淡水的流入对停留时间的估计影响最大,而潮汐循环几乎根本不影响停留时间。还表明,模拟的小睡循环和开始阶段对Arvand的时间尺度的影响可以忽略不计。测深研究表明,河口的两个门槛往往会显着增加停留时间。了解这些时间尺度的适用性及其估算方法有助于我们评估河口的水质管理。

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