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APPLICATION OF COUPLED LATTICE BOLTZMANN AND PHASE-FIELD METHODS FOR MULTIPHASE FLOW SIMULATIONS

机译:格子Boltzmann耦合和相场法在多相流模拟中的应用

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Coupling of lattice Boltzmann (LB) and phase-field (PF) methods is discussed for simulation of a range of multiphase flow problems. The local relaxation and shifting operators make the LB method an attractive candidate for the simulation of the single-phase as well as multiphase flows. For simulating interface dynamics, LB methods require to be coupled with an appropriate scheme representing interfacial dynamics. To this end, we have used a model based on the order parameter, which could be either an index function or a phase-field variable, and coupled it with a LB solver for the simulation of various classes of complex multi-physics and multiphase flows. The LB method is used to compute the flow-field, and, in the case of electrodeposition process modeling, the electro-static potential-field. The application of such a coupled LB-PF is illustrated by the solution of a variety of examples. Finally, fast simulation of such a coupled algorithm is achieved using the state-of-art numerical solution acceleration techniques involving preconditioning and multigrid approaches.
机译:讨论了格子Boltzmann(LB)和相场(PF)方法的耦合,以模拟一系列多相流问题。局部松弛和位移算子使LB方法成为单相和多相流模拟的有吸引力的候选方法。为了模拟界面动力学,LB方法需要与代表界面动力学的合适方案相结合。为此,我们使用了基于阶数参数的模型,该模型可以是索引函数或相场变量,并将其与LB解算器结合使用,以模拟各种类型的复杂多物理场和多相流。 LB方法用于计算流场,在电沉积过程建模的情况下,用于计算静电势场。通过各种示例的解决方案来说明这种耦合的LB-PF的应用。最后,使用涉及预处理和多网格方法的最新数值解决方案加速技术,可以实现这种耦合算法的快速仿真。

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