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Parallel simulation of multiphase flows using octree adaptivity and the volume-of-fluid method

机译:使用八叉树自适应度和流体体积方法并行模拟多相流

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摘要

We describe computations performed using the Gerris code, an open-source software implementing finite volume solvers on an octree adaptive grid together with a piecewise linear volume of fluid interface tracking method. The parallelisation of Gerris is achieved by domain decomposition. We show examples of the capabilities of Gerris on several types of problems. The impact of a droplet on a layer of the same liquid results in the formation of a thin air layer trapped between the droplet and the liquid layer that the adaptive refinement allows to capture. It is followed by the jetting of a thin corolla emerging from below the impacting droplet. The jet atomisation problem is another extremely challenging computational problem, in which a large number of small scales are generated. Finally we show an example of a turbulent jet computation in an equivalent resolution of 6×1024~3 cells. The jet simulation is based on the configuration of the Deepwater Horizon oil leak.
机译:我们描述了使用Gerris代码执行的计算,该代码是在octree自适应网格上实现有限体积求解器的开源软件,以及流体界面跟踪方法的分段线性体积。 Gerris的并行化是通过域分解实现的。我们展示了Gerris在几种类型问题上的能力的示例。液滴对相同液体层的冲击导致形成陷于液滴和液体层之间的稀薄的空气层,自适应细化允许捕获该空气层。接下来是从撞击液滴下方喷出稀薄的花冠。射流雾化问题是另一个极富挑战性的计算问题,其中会生成大量的小规模。最后,我们给出了一个等效分辨率为6×1024〜3个单元的湍流射流计算示例。射流模拟基于“深水地平线”漏油的配置。

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