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On the failure of upscaling the single-collector efficiency to the transport of colloids in an array of collectors

机译:关于将单个收集器效率提升为一系列收集器中胶体运输的失败

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摘要

Defining the removal efficiency of a filter is a key aspect for colloid transport in porous media. Several efforts were devoted to derive accurate correlations for the single-collector removal efficiency, but its upscaling to the entire porous medium is still a challenging topic. A common approach involves the assumption of deposition being independent of the history of transport, that is, the collector efficiency is uniform along the porous medium. However, this approach was shown inadequate under unfavorable deposition conditions. In this work, the authors demonstrate that it is not adequate even in the simplest case of favorable deposition. Computational Fluid Dynamics (CFD) simulations were run in a vertical array of 50 identical spherical collectors. Particle transport was numerically solved by analyzing a broad range of parameters. The results evidenced that when particle deposition is not controlled by Brownian diffusion, nonexponential concentration profiles are retrieved, in contrast with the assumption of uniform efficiency. If sedimentation and interception dominate, the efficiency of the first sphere is significantly higher compared to the others, and then declines along the array down to an asymptotic value. Finally, a correlation for the upscaled removal efficiency of the entire array was derived
机译:定义过滤器的去除效率是在多孔介质中胶体运输的关键方面。为了获得单收集器去除效率的精确相关性,我们付出了一些努力,但是将其升级到整个多孔介质仍然是一个充满挑战的话题。一种常见的方法是假设沉积与运输历史无关,也就是说,收集器的效率沿多孔介质是均匀的。然而,在不利的沉积条件下,该方法显示出不足。在这项工作中,作者证明即使在最简单的有利沉积条件下,它也不足够。计算流体动力学(CFD)模拟在50个相同的球形收集器的垂直阵列中运行。通过分析广泛的参数,以数值方式解决了粒子传输问题。结果证明,当颗粒沉积不受布朗扩散控制时,与均匀效率的假设相反,可恢复非指数浓度分布。如果沉降和拦截占主导地位,则第一个球的效率将比其他球高得多,然后沿阵列下降至渐近值。最后,得出了整个阵列的放大去除效率的相关性

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