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An LBM-PNM framework for immiscible flow: With applications to droplet spreading on porous surfaces

机译:用于不混溶的流量的LBM-PNM框架:应用于液滴在多孔表面上散布

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The behaviour of droplets on porous media, combining the spreading above and imbibition into the medium, is of foundational interests for a series of applications. In this work, we combine the lattice Boltzmann method (LBM) and pore-network method (PNM) to develop an efficient and robust numerical framework in which the coarse-scale multiphase transport in porous media are modelled by the PNM while the fluid dynamics containing multiple components are resolved by the LBM. An effective transport mechanism has been implemented to ensure mass conservation and pressure continuity across the interface. This method is ideally adapted to flow domains, with two distinguishable characteristic length-scales. The numerical framework is validated by comparison with experimental observations of droplets on flat porous surfaces. Moreover, the behaviour of droplets on non-flat porous surfaces has been also investigated, demonstrating the influence of surface curvature on the competing mechanisms of droplet spreading and imbibition. (C) 2020 Elsevier Ltd. All rights reserved.
机译:液滴对多孔介质的行为,将上面的扩展和吸入介质中的展开,是一系列应用的基本兴趣。在这项工作中,我们将格子Boltzmann方法(LATTICE Boltzmann方法(LBM)和孔网络方法(PNM)结合起来开发一种有效且稳健的数值框架,其中多孔介质中的粗级多相传输在含有流体动力学的同时由PNM建模的多孔介质模拟LBM解析多个组件。已经实施了有效的运输机制,以确保界面的质量保护和压力连续性。该方法理想地适用于流域,具有两个可区分特性长度尺度。通过与平坦多孔表面上的液滴的实验观察相比,验证了数值框架。此外,还研究了非平坦多孔表面上的液滴的行为,证明了表面曲率对液滴扩散和吸收的竞争机制的影响。 (c)2020 elestvier有限公司保留所有权利。

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