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On the application of the depth-averaged random walk method to solute transport simulations

机译:深度平均随机游动法在溶质运移模拟中的应用

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摘要

Most numerical studies on solute mixing rely on mesh-based methods, and complicated schemes have been developed to enhance numerical stability and reduce artificial diffusion. This paper systematically studies the depth-averaged random walk scheme, which is a meshfree method with the merits of being highly robust and free of numerical diffusion. First, the model is used to solve instantaneous release problems in uniform flows. Extensive parametric studies are carried out to investigate the influences of the number of particles and the size of time steps. The predictions are shown to be independent of time steps but are sensitive to the particle numbers. Second, the model is applied to the solute transport problem along an estuary subject to extensive wetting and drying during tidal oscillations. Finally, the model is used to investigate the wind-induced chaotic mixing in a shallow basin. The effect of diffusion on the chaotic mixing is investigated. This study proposes a generic sampling method to interpret the output of the random walk method and highlights the importance of accurately taking diffusion into account in analysing the transport phenomena. The sampling technique also offers a guideline for estimating the total number of particles needed in the application.
机译:关于溶质混合的大多数数值研究都依赖于基于网格的方法,并且已经开发出复杂的方案来增强数值稳定性并减少人为扩散。本文系统地研究了深度平均随机游走方案,该方案是一种无网格方法,具有高度鲁棒性和无数值扩散的优点。首先,该模型用于解决均匀流中的瞬时释放问题。进行了广泛的参数研究,以研究粒子数量和时间步长的影响。显示的预测与时间步长无关,但对粒子数敏感。第二,将模型应用于潮汐振荡期间沿河口的溶质运移问题,该河床要经过广泛的润湿和干燥。最后,该模型用于研究浅盆地中风引起的混沌混合。研究了扩散对混沌混合的影响。这项研究提出了一种通用采样方法来解释随机游走方法的输出,并强调了在分析运输现象时准确考虑扩散的重要性。采样技术还为估算应用中所需的颗粒总数提供了指导。

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