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Lattice Boltzmann simulation of polymer melt flow with a low Reynolds number

机译:低雷诺数的聚合物熔体流动的格子Boltzmann模拟

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The lattice Boltzmann method (LBM) has been used in various fluid flow analyses as an alternative to the traditional method of computational fluid dynamics. In the study reported here, the LBM was used to simulate a simple Hele-Shaw melt flow of polymers considering their actual physical properties, whereas the Carreau fluid model was used to evaluate the polymer melt viscosity. Since the Reynolds number of a polymer melt flow is typically quite low due to its high viscosity, which in turn lowers its convergence rate in the LBM, introducing a new density offset method improved that rate. In this paper, cases of simulations with pressure or velocity inlet boundary conditions are discussed in which the density offset method is applied.
机译:格子玻尔兹曼方法(LBM)已用于各种流体流动分析中,作为传统的计算流体动力学方法的替代方法。在此处报道的研究中,考虑到它们的实际物理特性,LBM用于模拟简单的Hele-Shaw聚合物熔体流动,而Carreau流体模型用于评估聚合物熔体粘度。由于聚合物熔体流的雷诺数通常由于其高粘度而非常低,因而降低了其在LBM中的收敛速度,因此引入新的密度补偿方法可以提高该速度。在本文中,讨论了使用压力或速度入口边界条件进行模拟的情况,其中应用了密度偏移方法。

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