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首页> 外文期刊>Journal of Hydrology >Scale issues and the effects of heterogeneity on the dune-induced hyporheic mixing
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Scale issues and the effects of heterogeneity on the dune-induced hyporheic mixing

机译:鳞片问题及异质性对沙丘诱导的低流变混合的影响

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Hyporheic mixing plays a vital role in physical, biogeochemical, and thermal processes in river networks. While many studies have emphasized the role of streambed heterogeneity in hyporheic mixing processes, this study articulates the scale issues inherent in concentration, mixing, heterogeneity, and modeling approaches. It subsequently conducted simulations of hyporheic mixing in synthetic, heterogeneous, 2-D cross-sectional river beds based on prescribed hydraulic conductivity defined at the local-scale. It then investigated the flux variation distribution and the mixing zone under different degrees of heterogeneity and flow scenarios. Since the characterization of the heterogeneities in detail at the local scale is practically impossible, Monte Carlo simulation based on stochastic theory was used to demonstrate the hyporheic mixing under the large-scale control volume (macromixing). Afterward, a first-order stochastic analysis was undertaken to explore the relationship between local-scale flux variance distribution and the mixing zone under different heterogeneity and flow scenarios. The results of this study show that the flux variance in the streambed is an appropriate metric for assessing the magnitude of hyporheic mixing at all scales. Further, surface water velocity and upwelling groundwater are found to be the dominant controlling factors of the flux variance and in turn, the mixing process, followed by the streambed heterogeneity. In addition, it demonstrates that the hyporheic mixing process is significantly affected by the complex surface and groundwater circulation regimes and the stagnation zone under steady-state flow conditions.
机译:水流混合在河网的物理、生物地球化学和热过程中起着至关重要的作用。虽然许多研究都强调了河床异质性在低流变混合过程中的作用,但本研究阐明了浓度、混合、异质性和建模方法中固有的尺度问题。随后,它根据在当地尺度上定义的规定水力传导率,对合成的、非均质的、二维横截面河床中的低流变混合进行了模拟。然后研究了不同非均质性和流动情景下的通量变化分布和混合区。由于在局部尺度上详细表征异质性几乎是不可能的,因此使用基于随机理论的蒙特卡罗模拟来证明大规模控制体积(宏观混合)下的低流变混合。然后,通过一阶随机分析,探究不同非均质性和流动情景下局部尺度通量方差分布与混合区的关系。本研究的结果表明,河床中的通量方差是评估所有尺度下低流变混合幅度的合适指标。此外,地表水流速和上升流地下水是通量变化的主要控制因素,进而是混合过程的主要控制因素,其次是河床非均质性。此外,还表明了稳态流动条件下复杂的地表水和地下水循环状态以及停滞区对低流变混合过程的显著影响。

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