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Cascaded lattice Boltzmann method with improved forcing scheme for large-density-ratio multiphase flow at high Reynolds and Weber numbers

机译:高雷诺数和韦伯数时大密度比多相流的改进强迫方案的级联格子玻尔兹曼方法

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摘要

A recently developed forcing scheme has allowed the pseudopotential multiphase lattice Boltzmann method to correctly reproduce coexistence curves, while expanding its range to lower surface tensions and arbitrarily high density ratios [Lycett-Brown and Luo, Phys. Rev. E 91, 023305 (2015)]. Here, a third-order Chapman-Enskog analysis is used to extend this result from the single-relaxation-time collision operator, to a multiple-relaxation-time cascaded collision operator, whose additional relaxation rates allow a significant increase in stability. Numerical results confirm that the proposed scheme enables almost independent control of density ratio, surface tension, interface width, viscosity, and the additional relaxation rates of the cascaded collision operator. This allows simulation of large density ratio flows at simultaneously high Reynolds and Weber numbers, which is demonstrated through binary collisions of water droplets in air (with density ratio up to 1000, Reynolds number 6200 and Weber number 440). This model represents a significant improvement in multiphase flow simulation by the pseudopotential lattice Boltzmann method in which real-world parameters are finally achievable.
机译:最近开发的强迫方案已使准电势多相晶格Boltzmann方法能够正确地再现共存曲线,同时将其范围扩展到较低的表面张力和任意高的密度比[Lycett-Brown和Luo,Phys。修订版E 91,023305(2015)。在这里,使用三阶Chapman-Enskog分析将结果从单弛豫时间碰撞算子扩展到多弛豫时间级联碰撞算子,其附加松弛率可显着提高稳定性。数值结果表明,该方案几乎可以独立控制密度比,表面张力,界面宽度,粘度以及级联碰撞算子的附加弛豫率。这允许同时在高雷诺数和韦伯数下模拟大的密度比流动,这通过空气中的水滴(密度比高达1000,雷诺数6200和韦伯数440)的二元碰撞来证明。该模型表示通过伪电势格子玻尔兹曼方法在多相流模拟中的重大改进,其中最终可以实现实际参数。

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