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Numerical Simulation of Gas-Liquid Flow in a Bubble Column by Intermittent Aeration in Newtonian Liquid/Non-Newtonian Liquid

机译:牛顿液体/非牛顿液体间歇通气气液流动的数值模拟

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摘要

The dynamic behaviors of gas-liquid two-phase flow were simulated in a lab-scale intermittent bubble column by Euler-Euler two-fluid model coupled with the PBM (population balance model) using two different liquid phases, i.e., Newtonian fluid (water)/non-Newtonian fluid (activated sludge). When non-Newtonian fluid was used during intermittent aeration, some interesting results were obtained. Two symmetric vortexes existed in the time-averaged flow field; the vertical time-averaged velocity of the liquid phase decreased with increasing anaerobic time; the average gas holdup distribution was like a trapezoid with long upper side and short lower side and affected by the dynamic viscosity of the liquid phase. Compared with non-Newtonian fluid, the use of Newtonian fluid as the liquid phase led to a more complicated time-averaged flow field structure and vertical time-averaged velocity distribution, higher average gas holdup, and the asymmetric column-shaped gas holdup distribution with increasing anaerobic time. For different liquid phases, the instantaneous flow field, instantaneous vertical velocity, and instantaneous gas holdup distribution all periodically changed with anaerobic time; however, different from Newtonian liquid phase, non-Newtonian liquid phase had no periodic oscillating instantaneous horizontal velocity.
机译:通过使用两种不同的液相,即牛顿液(即牛顿流体(水/ /非牛顿液(活性污泥)。当在间歇通气期间使用非牛顿流体时,获得了一些有趣的结果。在时间平均流场中存在两个对称涡旋;液相的垂直时间平均速度随着厌氧时间的增加而降低;平均气体储存分布类似于梯形,上侧长,下侧短,并受液相的动态粘度的影响。与非牛顿流体相比,使用牛顿流体作为液相导致更复杂的时间平均流场结构和垂直时平速度分布,较高的平均气体保持,以及不对称的柱形气体储气分配增加厌氧时间。对于不同的液相,瞬时流场,瞬时垂直速度和瞬时气体持有分布与厌氧时间周期性地改变;然而,与牛顿液相不同,非牛顿液相没有周期性振荡瞬时水平速度。

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