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Multiphase-flow Statistics using 3D Detection and Tracking Algorithm (MS3DATA): Methodology and application to large-scale fluidized beds

机译:使用3D检测和跟踪算法(MS3DATA)的多相流统计:方法学和在大型流化床中的应用

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Bubble dynamics play a critical role in the hydrodynamics of fluidized beds and significantly affect reactor performance. In this study, MS3DATA (Multiphase-flow Statistics using 3D Detection And Tracking Algorithm) is developed, validated and applied to numerical simulations of large-scale fluidized beds. Using this algorithm, bubbles are detected using void fraction data from simulations and are completely characterized by their size, shape and location while their velocities are computed by tracking bubbles across successive time frames. A detailed analysis of 2D (across vertical sections) and 3D bubble statistics using 3D simulations of lab-scale (diameter 14.5 cm) and pilot-scale bed (diameter 30 cm) is presented and it is shown that the former (a) under-predicts sizes of larger bubbles, (b) cannot detect a large fraction of small bubbles (<3 cm) and (c) is unable to track the azimuthal motion of bubbles in the larger bed. The scalability of the algorithm is discussed by comparing the computational cost of computing bubble statistics on highly resolved grids. Even though 3D bubble detection is significantly more expensive than 2D detection, the cost is still negligible compared to the cost of accurate simulations. Besides application to fluidization simulation data of large fluidized beds, this algorithm can be easily extended to characterize bubbles, droplets and clusters in other areas of multiphase flows. (C) 2016 Elsevier B.V. All rights reserved.
机译:气泡动力学在流化床的流体动力学中起关键作用,并显着影响反应器性能。在这项研究中,MS3DATA(使用3D检测和跟踪算法的多相流统计数据)已开发,验证并应用于大型流化床的数值模拟。使用该算法,可以使用来自模拟的空隙分数数据检测气泡,并通过气泡的大小,形状和位置来完全表征气泡,而通过跟踪连续时间范围内的气泡来计算气泡的速度。利用实验室规模(直径14.5厘米)和中试规模床(直径30厘米)的3D模拟,对2D(垂直截面)和3D气泡统计数据进行了详细分析,结果表明,前者(a)低于-可以预测较大气泡的大小,(b)无法检测到大部分小气泡(<3 cm),并且(c)无法跟踪较大床中气泡的方位角运动。通过比较在高度解析的网格上计算气泡统计量的计算成本,讨论了该算法的可伸缩性。即使3D气泡检测比2D检测贵得多,但与精确模拟的成本相比,成本仍然可以忽略不计。除了应用于大型流化床的流化模拟数据外,该算法还可以轻松扩展以表征多相流其他区域中的气泡,液滴和团簇。 (C)2016 Elsevier B.V.保留所有权利。

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