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首页> 外文期刊>International Journal of Multiphase Flow >A fully adaptive front tracking method for the simulation of two phase flows
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A fully adaptive front tracking method for the simulation of two phase flows

机译:一种完全自适应的前端跟踪方法,用于模拟两相流

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摘要

This work presents a computational methodology for the simulation of three-dimensional, two-phase flows, based on adaptive strategies for space discretization, as well as a varying time-step approach. The method is based on the Front-Tracking method and the discretization of the Eulerian domain employs a Structured Adaptive Mesh Refinement strategy along with an implicit-explicit pressure correction scheme. Modelling of the Lagrangian interface was carried out with the GNU Triangulated Surface (GTS) library, which greatly reduced the difficulties of interface handling in 3D. The methodology was applied to a series of rising bubble simulations and validated employing experimental results and compared to literature numerics. Finally, the algorithm was applied to the simulation of two cases of bubbles rising in the wobbling regime. The use of adaptive mesh refinement strategies led to physically insightful results, which otherwise would not be possible in a serial code with a uniform mesh.
机译:这项工作提出了一种基于空间离散化的自适应策略以及时变方法的,用于模拟三维两相流的计算方法。该方法基于Front-Tracking方法,欧拉域的离散化采用结构化自适应网格细化策略以及隐式-显性压力校正方案。拉格朗日界面的建模是使用GNU三角曲面(GTS)库进行的,这大大降低了3D中界面处理的难度。将该方法应用于一系列上升气泡模拟,并利用实验结果进行了验证,并与文献数字进行了比较。最后,该算法被应用于模拟两种情况下气泡在摆动状态下上升。自适应网格细化策略的使用导致了具有物理洞察力的结果,否则在具有统一网格的序列代码中是不可能的。

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