...
首页> 外文期刊>Hydrology and Earth System Sciences Discussions >Sediment transport modelling in riverine environments: on the importance of grain-size distribution, sediment density, and suspended sediment concentrations at the upstream boundary
【24h】

Sediment transport modelling in riverine environments: on the importance of grain-size distribution, sediment density, and suspended sediment concentrations at the upstream boundary

机译:河流环境中的沉积物传输建模:论粒度分布,沉积物密度和悬浮沉积物浓度在上游边界的重要性

获取原文
           

摘要

Hydromorphodynamic models are powerful tools for predicting the potential mobilization and transport of sediment in river ecosystems. Recent studies have shown that they are able to predict suspended sediment matter concentration in small river systems satisfactorily. However, hydro-sedimentary modelling exercises often neglect suspended sediment properties (e.g. sediment densities and grain-size distribution), which are known to directly control sediment dynamics in the water column during flood events. The main objective of this study is to assess whether a better representation of such properties leads to an improved performance in the model. The modelling approach utilizes a fully coupled hydromorphodynamic model based on TELEMAC-3D (v7p1) and an enhanced version of the sediment transport module SISYPHE (based on v7p1), which allows for a refined sediment representation (i.e. 10-class sediment mixtures instead of 2-class mixtures and distributed sediment density instead of uniform). The proposed developments of the SISYPHE model enable us to evaluate and discuss the added value of sediment representation refinement for improving sediment transport and riverbed evolution predictions. To this end, we used several model set-ups to evaluate the influence of sediment grain-size distribution, sediment density, and suspended sediment concentration at the upstream boundary on model predictions. As a test case, we simulated a flood event in a small-scale river, the Orne river in north-eastern France. Depending on the model set-up, the results show substantial discrepancies in terms of simulated bathymetry evolutions. Moreover, the model based on an enhanced configuration of the sediment grain-size distribution (10?classes of particle sizes) and with distinct densities per class outperforms the standard SISYPHE configuration, with only two sediment grain-size classes, in terms of simulated suspended sediment concentration.
机译:水流式模型是预测河流生态系统中沉积物的潜在动员和运输的强大工具。最近的研究表明,它们能够令人满意地预测小河系统中的悬浮沉积物浓度。然而,水沉积模拟锻炼通常忽视悬浮沉积物(例如沉积物密度和晶粒尺寸分布),已知在洪水事件期间直接控制水柱中的沉积物动力学。本研究的主要目的是评估这些属性的更好代表性是否导致模型中的性能提高。建模方法利用基于Telemac-3D(V7P1)的完全耦合的水流式模型和沉积物传输模块Sisyphe(基于V7P1)的增强版,这允许精制沉积物表示(即10级沉积物混合物而不是2 - 组合混合物和分布沉积物密度而不是均匀)。 Sisyphe模型的拟议发展使我们能够评估和讨论沉积物表示细化的附加值,以改善沉积物运输和河床演化预测。为此,我们使用了几种模型设置来评估沉积物粒度分布,沉积物密度和悬浮沉积物浓度在模型预测上游边界的影响。作为一个测试案例,我们在法国东北部的小型河流中模拟了一个小型河流的洪水事件。根据模型设置,结果表明了模拟的沐浴作用方面的大量差异。此外,基于沉积物粒度分布的增强结构(10?粒度等级)和每级不同密度的模型优于标准Sisyphe配置,只有两个沉积物晶粒尺寸等级,就模拟悬挂而言沉积物浓度。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号