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On simulations of high-density ratio flows using color-gradient multiphase lattice boltzmann models

机译:使用颜色梯度多相点阵Boltzmann模型模拟高密度比流

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Originally, the color-gradient model proposed by Rothman and Keller (R-K) was unable to simulate immiscible two-phase flows with different densities. Later, a revised version of the R-K model was proposed by Grunau et al. [D. Grunau, S. Chen and K. Eggert, Phys. Fluids A: Fluid Dyn. 5, 2557 (1993).] and claimed it was able to simulate two-phase flows with high-density contrast. Some studies investigate high-density contrast two-phase flows using this revised R-K model but they are mainly focused on the stationary spherical droplet and bubble cases. Through theoretical analysis of the model, we found that in the recovered Navier-Stokes (N-S) equations which are derived from the R-K model, there are unwanted extra terms. These terms disappear for simulations of two-phase flows with identical densities, so the correct N-S equations are fully recovered. Hence, the R-K model is able to give accurate results for flows with identical densities. However, the unwanted terms may affect the accuracy of simulations significantly when the densities of the two fluids are different. For the simulations of spherical bubbles and droplets immersed in another fluid (where the densities of the two fluids are different), the extra terms may not be important and hence, in terms of surface tension, accurate results can be obtained. However, generally speaking, the unwanted term may be significant in many flows and the R-K model is unable to obtain the correct results due to the effect of the extra terms. Through numerical simulations of parallel two-phase flows in a channel, we confirm that the R-K model is not appropriate for general two-phase flows with different densities. A scheme to eliminate the unwanted terms is also proposed and the scheme works well for cases of density ratios less than 10.
机译:最初,Rothman和Keller(R-K)提出的颜色渐变模型无法模拟具有不同密度的不混溶的两相流。后来,Grunau等人提出了R-K模型的修订版。 [D. Grunau,S。Chen和K.Eggert,物理学。流体A:流体动力学。 5,2557(1993)。]并声称它能够模拟具有高密度对比的两相流。一些研究使用此修正的R-K模型研究高密度对比两相流,但它们主要集中在静止的球形液滴和气泡情况下。通过对该模型的理论分析,我们发现在从R-K模型派生的恢复的Navier-Stokes(N-S)方程中,有不需要的多余项。对于具有相同密度的两相流模拟,这些术语消失了,因此可以完全恢复正确的N-S方程。因此,R-K模型能够为密度相同的流量提供准确的结果。但是,当两种流体的密度不同时,不需要的项可能会严重影响模拟的准确性。对于沉浸在另一种流体(两种流体的密度不同)中的球形气泡和液滴的模拟,多余项可能并不重要,因此,就表面张力而言,可以获得准确的结果。但是,一般而言,不需要的项在许多流程中可能很重要,并且由于额外项的影响,R-K模型无法获得正确的结果。通过对通道中平行两相流的数值模拟,我们确认R-K模型不适用于具有不同密度的一般两相流。还提出了消除不必要项的方案,该方案在密度比小于10的情况下效果很好。

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