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Particle-tracking method applied to transport problems in water bodies

机译:应用于水体中运输问题的粒子跟踪方法

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In this work a particle-tracking model was implemented and applied to simulate the instantaneous injection of a dye tracer in the Setubal Lagoon, Santa Fe, Argentina. It focused on the study of the water quality problem generated in point sources of contaminated water through a rainfall drainage system. This problem is difficult to treat with the so-called Eulerian methods. The interpolation for the field velocity, the number of particles used in the simulations, the representation of boundary conditions and the mesh size for the calculation of concentrations are discussed. A field experiment using tracers is described in order to compare the numerical results and the simulations with real data. The diffusion coefficients calculated from the experiment and the hydrodynamic modelling give the necessary inputs for the simulations using the particle-tracking modelling of the measured four clouds. The results support the main advantages of this method in terms of strict mass conservation, good representation of high concentration gradients and point sources and as a consequence, a good representation of the maximum concentration and the general form of the clouds.
机译:在这项工作中,实施并应用了粒子跟踪模型,以模拟阿根廷Santa Fe的机架泻湖中染色示踪剂的瞬时注射。它专注于通过降雨排水系统在污染水点源产生的水质问题的研究。这种问题很难用所谓的欧拉方法治疗。讨论了用于场速度的插值,模拟中使用的粒子的数量,边界条件的表示和用于计算浓度的网格尺寸。描述使用示踪剂的现场实验,以比较数值结果和使用实际数据的模拟。根据实验和流体动力学建模计算的扩散系数给出了使用测量的四个云的粒子跟踪建模的模拟所需的输入。结果支持这种方法的主要优点,在严格的质量保护方面,高浓度梯度和点源的良好表示,结果,最大浓度和云的一般形式的良好表示。

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