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A CFD model for the coupling of multiphase, multicomponent and mass transfer physics for micro-scale simulations

机译:用于多尺度模拟的多相,多组分和传质物理耦合的CFD模型

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This paper presents a CFD model that couples the physics of multiphase and multicomponent flow involving mass transfer for micro-scale simulations. The volume-of-fluid (VOF) model is utilised to capture the multiphase physics, and smoothing operations are applied in the surface tension force calculation to minimise spurious velocities. For multicomponent tracking of the species transport, the α-factor and expulsion operation methods are implemented to ensure that the species are tracked within the correct phase. Three different mass transfer models were adopted with modifications to the original models. The developed coupled multiphase-multicomponent model was assessed via a series of validation cases: a simple one-dimensional (1D) diffusion problem, horizontal vapour flow over a smooth stationary liquid where Sherwood number was used to measure mass transfer performance, and the dissolution of a two-dimensional (2D) droplet. In all the test cases, the model was able to yield reasonably close results with the analytical solution or empirical correlations used in the validation, thus establishing its accuracy and reliability of the developed model. Simulations using the coupled multiphase-multicomponent model represent a cost-effective approach to obtaining insights into the flow physics for a variety of applications: dissolution of droplets in microchannels, transport of drugs in blood vessels that entails mass transfer and simulations of carbon dioxide enhanced oil recovery at the pore-scale.
机译:本文提出了一种CFD模型,该模型将涉及传质的多相流和多组分流的物理过程耦合起来,用于微观模拟。流体体积(VOF)模型用于捕获多相物理学,并且在表面张力计算中应用了平滑操作以最小化杂散速度。对于物种运输的多组分跟踪,实施了α因子和驱逐操作方法以确保在正确的相位内跟踪物种。采用了三种不同的传质模型,并对原始模型进行了修改。通过一系列验证案例对已开发的多相-多组分耦合模型进行了评估:一个简单的一维(1D)扩散问题,在光滑平稳的液体上的水平蒸汽流(其中使用Sherwood数来测量传质性能)以及二维(2D)小滴。在所有测试案例中,该模型均能够通过验证中使用的分析解决方案或经验相关性得出合理接近的结果,从而建立了所开发模型的准确性和可靠性。使用耦合多相-多组分模型进行的模拟代表了一种经济有效的方法,可洞察各种应用中的流动物理学:液滴在微通道中的溶解,药物在血管中的运输,这需要进行质量转移以及对二氧化碳增强油的模拟在孔尺度恢复。

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