首页> 外文会议>ASME Joint US-European Fluids Engineering Division summer meeting;FEDSM2010 >A TWO-WAY COUPLED POLYDISPERSED SIMULATION OF BUBBLY FLOW BENEATH A PLUNGING LIQUID JET
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A TWO-WAY COUPLED POLYDISPERSED SIMULATION OF BUBBLY FLOW BENEATH A PLUNGING LIQUID JET

机译:突入液体射流下气泡流动的双向耦合多角度模拟

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摘要

Plunging liquid jets are commonly encountered in nature and are widely used in industrial applications (e.g., in waterfalls, waste-water treatment, the oxygenation of chemical liquids, etc.). Despite numerous experimental studies that have been devoted to this interesting problem, there have been very few two-phase flow simulations. The main difficulty is the lack of a quantitative model to simulate the air entrainment process, which plays a critical role in this problem. In this paper, we present a computational multiphase fluid dynamics (CMFD) approach for solving this problem. The main ingredients of this approach are a comprehensive subgrid air entrainment model that predicts the rate and location of the air entrainment and a two-fluid transport model in which bubbles of different sizes are modeled as a continuum fluid. Using this approach, a Reynolds-averaged Navier Stokes (RaNS) two-way coupled two-phase flow simulation of a plunging liquid jet with a diameter of 24mm and a liquid jet velocity around 3.5m/s was performed. We analyzed the simulated void fraction and bubble count rate profiles at three different depths beneath the average free surface, and compared them with experimental data. We observed good agreement at all locations.
机译:在自然界中通常会遇到柱塞式喷流,并广泛用于工业应用(例如瀑布,废水处理,化学液体的氧化等)。尽管针对这一有趣的问题进行了大量的实验研究,但很少有两相流模拟。主要困难是缺乏模拟空气夹带过程的定量模型,该模型在此问题中起着至关重要的作用。在本文中,我们提出了一种用于解决此问题的计算多相流体动力学(CMFD)方法。这种方法的主要组成部分是一个全面的亚网格空气夹带模型,该模型可预测空气夹带的速率和位置;以及一种双流体传输模型,其中将不同大小的气泡建模为连续流体。使用这种方法,对直径为24mm的喷射液体和速度约为3.5m / s的喷射液体进行了雷诺平均Navier Stokes(RaNS)双向耦合两相流模拟。我们分析了平均自由表面以下三个不同深度的模拟空隙率和气泡计数率分布,并将它们与实验数据进行了比较。我们在所有地点都看到了良好的协议。

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