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A discontinuous finite element suspended sediment transport model for water quality assessments in river networks

机译:河网水质评估的不连续有限元悬浮泥沙运移模型

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摘要

Suspended sediment plays an important role in the distribution and transport of many pollutants (such as radionuclides) in rivers. Pollutants may adsorb on fine suspended particles (e.g. clay) and spread according to the suspended sediment movement. Hence, the simulation of the suspended sediment mechanism is indispensable for realistic transport modelling. This paper presents and tests a simple mathematical model for predicting the suspended sediment transport in river networks. The model is based on the van Rijn suspended load formula and the advection-diffusion equation with a source or sink term that represents the erosion or deposition fluxes. The transport equation is solved numerically with the discontinuous finite element method. The model evaluation was performed in two steps, first by comparing model simulations with the measured suspended sediment concentrations in the Grote Nete-Molse Nete River in Belgium, and second by a model intercomparison with the sediment transport model NST MIKE 11. The simulations reflect the measurements with a Nash-Sutcliffe model efficiency of 0.6, while the efficiency between the proposed model and the NST MIKE 11 simulations is 0.96. Both evaluations indicate that the proposed sediment transport model, that is sufficiently simple to be practical, is providing realistic results.
机译:悬浮沉积物在河流中许多污染物(例如放射性核素)的分布和运输中起着重要作用。污染物可能会吸附在细小的悬浮颗粒(例如粘土)上,并根据悬浮的沉积物运动而扩散。因此,对于实际的输运模型,悬浮泥沙机理的模拟是必不可少的。本文提出并测试了一个简单的数学模型,用于预测河流网络中悬浮泥沙的输送。该模型基于van Rijn悬浮载荷公式和对流扩散方程,其中源或汇项代表侵蚀或沉积通量。用不连续有限元法对输运方程进行数值求解。模型评估分两个步骤进行,首先将模型模拟与比利时Grote Nete-Molse Nete河中测得的悬浮沉积物浓度进行比较,其次是通过与沉积物迁移模型NST MIKE 11进行模型比较。 Nash-Sutcliffe模型的效率为0.6,而建议的模型与NST MIKE 11仿真之间的效率为0.96。两项评估均表明,所提出的沉积物迁移模型非常简单,可以实际应用,正在提供现实的结果。

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