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首页> 外文期刊>Journal of Hydrology >A new semi-Lagrangian routing procedure for constituent transport in steady and unsteady flow velocity fields
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A new semi-Lagrangian routing procedure for constituent transport in steady and unsteady flow velocity fields

机译:稳态和非稳态流速场中成分输运的一种新的半拉格朗日路由方法

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In this paper, a new numerical model for the simulation of constituent transport in both steady and unsteady flow conditions is presented. The transport model is a routing procedure in which the advection process is solved by means of the Lagrangian coordinate transformation, while the dispersion process is approximated within each time step by means of the convolution principle, exploiting a multilinear procedure. In order to facilitate the application of the Lagrangian coordinate transformation during unsteady flow conditions, the unsteady velocity field corresponding to the linearized parabolic approximation of the Saint Venant Equations is provided, taking into account appropriate boundary conditions. Finally, classic BOD-DO relationships are embedded into the routing procedure in order to perform water quality applications with reactive constituents. The model is first demonstrated with respect to a numerical water quality model in both steady and unsteady hydraulic conditions, and is then applied to two real-world cases. Because of its characteristics, the proposed model seems suitable for real time forecast of pollutant concentrations when an emergency event occurs, or for water quality management in real rivers. (C) 2016 Elsevier B.V. All rights reserved.
机译:本文提出了一个新的数值模型,用于模拟稳态和非稳态流动条件下的组分迁移。运输模型是一个路由过程,其中通过拉格朗日坐标变换解决对流过程,同时利用多线性过程通过卷积原理在每个时间步长内近似离散过程。为了便于在非恒定流动条件下应用拉格朗日坐标变换,考虑了适当的边界条件,提供了与Saint Venant方程的线性抛物线近似相对应的非恒定速度场。最后,经典的BOD-DO关系被嵌入到路由过程中,以执行具有反应性成分的水质应用。该模型首先针对稳态和非稳态水力条件下的数值水质模型进行了演示,然后将其应用于两个实际案例。由于其特性,建议的模型似乎适合于在发生紧急事件时实时预测污染物浓度,或适用于实际河流中的水质管理。 (C)2016 Elsevier B.V.保留所有权利。

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