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Experimental Study and CFD-PBM Simulation of the Unsteady Gas-Liquid Flow in an Airlift External Loop Reactor

机译:空运外环反应器中不稳定气液流动的实验研究和CFD-PBM模拟

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摘要

The performance of external loop airlift reactor (ELALR) strongly depends on local prevailing hydrodynamics. In this work, the hydrodynamics characterization of the gas-liquid flow is performed in a laboratory scale ELALR. The bubbles plume and the velocity field of the riser are captured using Particle Image Velocimetry (PIV) technique and a three-dimensional CFD-PBM simulation is implemented to provide a full description of the flow structure. The effects of superficial gas velocity on the flow structure and the time-averaged liquid velocity are quantitatively investigated and the numerical results are in reasonable agreement with the PIV measurement. The results show that the gas-liquid two-phases flow in the riser is always unsteady, and the bubble plume meandering behavior is observed clearly. Gas holdup increases with the increase of superficial gas velocity, while the liquid axial velocity shows a trend of first increase and then decrease and the maximum is observed at superficial gas velocity of 30 mm/s. With the increase of superficial gas velocity, the probability density function curve becomes flatter, and changes from unimodal to bimodal. This work helps to gain in-depth understanding of the complex fluid hydrodynamics behavior inside an ELALR.
机译:外环空运反应堆(ELALR)的性能强烈取决于当地普遍的流体动力学。在这项工作中,在实验室规模的Elalr中进行气液流动的流体动力学表征。使用粒子图像速度(PIV)技术捕获提升器的气泡羽毛和提升器的速度场,并且实施了三维CFD-PBM模拟以提供流动结构的完整描述。浅表气体速度对流动结构和时间平均液体速度的影响是定量研究的,并且数值结果与PIV测量合理一致。结果表明,提升器中的气液两相流动始终不稳定,清楚地观察到气泡羽毛曲率行为。随着浅表气体速度的增加而增加,气体储气量增加,而液体轴向速度显示第一增加的趋势,然后在浅表气体速度为30mm / s的情况下观察到最大值。随着浅表气体速度的增加,概率密度函数曲线变得更平坦,并且从单亮片变为双峰。这项工作有助于深入了解Elalr内部复杂的流体流体动力学行为。

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