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模拟罗纳河河羽(法国)对悬浮颗粒物的输运。对污染物扩散的影响。

Modelling the transport of suspended particulate matter by the Rhone River plume (France). Implications for pollutant dispersion.

作者信息

Periáñez R

机构信息

Departamento Física Aplicada I, E.U. Ingeniería Técnica Agrícola, Universidad de Sevilla. Ctra. Utrera km 1, 41013-Sevilla, Spain.

出版信息

Environ Pollut. 2005 Jan;133(2):351-64. doi: 10.1016/j.envpol.2004.05.021.

Abstract

A model to simulate the transport of suspended particulate matter by the Rhone River plume has been developed. The model solves the 3D hydrodynamic equations, including baroclinic terms and a 1-equation turbulence model, and the suspended matter equations including advection/diffusion of particles, settling and deposition. Four particle classes are considered simultaneously according to observations in the Rhone. Computed currents, salinity and particle distributions are, in general, in good agreement with observations or previous calculations. The model also provides sedimentation rates and the distribution of different particle classes over the sea bed. It has been found that high sedimentation rates close to the river mouth are due to coarse particles that sink rapidly. Computed sedimentation rates are also similar to those derived from observations. The model has been applied to simulate the transport of radionuclides by the plume, since suspended matter is the main vector for them. The radionuclide transport model, previously described and validated, includes exchanges of radionuclides between water, suspended matter and bottom sediment described in terms of kinetic rates. A new feature is the explicit inclusion of the dependence of kinetic rates upon salinity. The model has been applied to 137Cs and 239,240Pu. Results are, in general, in good agreement with observations.

摘要

已开发出一个用于模拟罗纳河羽流中悬浮颗粒物输运的模型。该模型求解三维水动力方程,包括斜压项和一个单方程湍流模型,以及悬浮物质方程,包括颗粒的平流/扩散、沉降和沉积。根据罗纳河的观测结果,同时考虑了四类颗粒。计算得到的水流、盐度和颗粒分布总体上与观测结果或先前的计算结果吻合良好。该模型还提供了沉积速率以及不同颗粒类别在海床上的分布情况。研究发现,靠近河口处的高沉积速率是由于粗颗粒快速下沉所致。计算得到的沉积速率也与观测得出的沉积速率相似。由于悬浮物质是放射性核素的主要载体,该模型已被应用于模拟羽流中放射性核素的输运。先前已描述并验证过的放射性核素输运模型,包括根据动力学速率描述的水、悬浮物质和底部沉积物之间放射性核素的交换。一个新特点是明确纳入了动力学速率对盐度的依赖性。该模型已应用于137Cs和239,240Pu。总体而言,结果与观测结果吻合良好。

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