论文标题

改进了用于液相变化的三维冬季多相晶格玻尔兹曼模型

Improved three-dimensional thermal multiphase lattice Boltzmann model for liquid-vapor phase change

论文作者

Li, Qing, Yu, Y., Luo, Kai. H.

论文摘要

近年来,使用晶格Boltzmann(LB)方法对液相变化进行建模。在本文中,我们提出了改进的三维(3D)纵向多相LB模型,用于模拟液体蒸气相变。提出的模型具有以下功能。首先,它仍然使用温度分布函数在热LB方法的框架内,因此保留了热LB方法的基本优势。其次,在现有的用于液体蒸气相变的热LB模型中,梯度项的有限差异计算$ \ nabla \ cdot u $和$ \ nabla t $通常需要在边界节点上进行特殊处理,而在拟议中的热LB模型中,这两个术语是在局部计算的。 Moreover, in some of the existing thermal LB models, the error term ${\partial _{t_0}}\left( {Tu} \right)$ is eliminated by adding local correction terms to the collision process in the moment space, which causes these thermal LB models to be limited to the D2Q9 lattice in two dimensions and the D3Q15 or D3Q19 lattice in three dimensions.相反,所提出的模型不受此类误差项的影响,因此可以在D3Q7晶格上构建热LB方程,从而简化了模型并提高了计算效率。进行数值模拟,以验证所提出的纵向多相LB模型的准确性和效率,以模拟液体蒸气相变。

Modeling liquid-vapor phase change using the lattice Boltzmann (LB) method has attracted significant attention in recent years. In this paper, we propose an improved three-dimensional (3D) thermal multiphase LB model for simulating liquid-vapor phase change. The proposed model has the following features. First, it is still within the framework of the thermal LB method using a temperature distribution function and therefore retains the fundamental advantages of the thermal LB method. Second, in the existing thermal LB models for liquid-vapor phase change, the finite-difference computations of the gradient terms $\nabla \cdot u$ and $\nabla T$ usually require special treatment at boundary nodes, while in the proposed thermal LB model these two terms are calculated locally. Moreover, in some of the existing thermal LB models, the error term ${\partial _{t_0}}\left( {Tu} \right)$ is eliminated by adding local correction terms to the collision process in the moment space, which causes these thermal LB models to be limited to the D2Q9 lattice in two dimensions and the D3Q15 or D3Q19 lattice in three dimensions. Conversely, the proposed model does not suffer from such an error term and therefore the thermal LB equation can be constructed on the D3Q7 lattice, which simplifies the model and improves the computational efficiency. Numerical simulations are carried out to validate the accuracy and efficiency of the proposed thermal multiphase LB model for simulating liquid-vapor phase change.

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