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Improved lattice Boltzmann model for multi-component diffusion flow with large pressure difference

机译:大压差下多组分扩散流的改进格子Boltzmann模型

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The pseudopotential lattice Boltzmann model has been widely used to solve multi-phase and multi-component flow problems. However, original pseudopotential model cannot be used in simulating diffusion flow with large pressure difference because of its limitation. In this paper, we incorporate pseudopotential model with a new form of effective mass to solve this problem based on the relationship between pressure difference and effective mass. The improved model is verified through Laplace's law and binary immiscible Poiseuille flow. By simulating pipeline binary diffusion flow and two-inlet binary cavity jet flow, we show that the improved model can achieve larger pressure difference than pseudopotential model with traditional effective mass forms.
机译:伪势格子玻尔兹曼模型已被广泛用于解决多相和多组分流动问题。然而,由于其局限性,原始的伪势模型不能用于模拟大压差的扩散流。在本文中,我们将伪势模型与一种新的有效质量形式结合起来,以基于压差与有效质量之间的关系来解决此问题。改进后的模型通过拉普拉斯定律和二元不混溶的Poiseuille流进行验证。通过模拟管道二元扩散流和二进水二元腔射流,我们发现改进的模型比传统有效质量形式的伪势模型具有更大的压差。

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