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首页> 外文期刊>International Journal of Multiphase Flow >Effects of tube diameter and submergence ratio on bubble pattern and performance of air-lift pump
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Effects of tube diameter and submergence ratio on bubble pattern and performance of air-lift pump

机译:管径和浸入率对气举泵的气泡形态和性能的影响

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摘要

Air-lift pump can pump liquid and sediments in it by using air-induced lift force. This working principle can be applied to direct carbon fuel cell (DCFC) to carry or transport high-temperature molten fuel or carbonate in the DCFC system. For this application, pumping performance and essential hydrodynamic features of air-lift pump with high submergence ratio are investigated experimentally. In this study, a model system of air-lift pump is designed and made for this purpose, where air is supplied from the bottom of the tube, flows up with a shape of bubble formed, entrains water inside the tube, and discharges it. Flow rate of water discharged from the top is measured with two variable parameters of tube diameter and submergence ratio. Bubble patterns formed in the tube are observed with various combinations of the two parameters and show four distinct patterns depending on air flow rate. A theoretical model is employed to predict discharge flow rate and it is comparable with the experimental results in slug-flow regime. Cracking flow rate, at which discharge of water is initiated, increases as tube diameter increases and submergence ratio decreases. The flow-rate ratio of water to air, i.e., pumping effectiveness, provides a feasible operating range of air-lift pump in terms of the two parameters.
机译:空气提升泵可以利用空气引起的提升力将液体和沉积物泵入其中。该工作原理可应用于直接碳燃料电池(DCFC),以在DCFC系统中运送或运输高温熔融燃料或碳酸盐。对于此应用,通过实验研究了高浸没率的气举泵的泵送性能和基本的水动力特性。在这项研究中,为此目的设计并制造了一个气举泵模型系统,其中空气从管的底部供应,以气泡的形式向上流动,将水夹带在管内并排出。从顶部排出的水的流量通过两个可变的管径和浸入率参数进行测量。用两个参数的各种组合观察到在管中形成的气泡模式,并根据空气流速显示出四个不同的模式。采用理论模型来预测排放流量,该模型可与团状流态的实验结果进行比较。随着管径的增加和浸入比的降低,开始排放水的裂化流量增加。就两个参数而言,水与空气的流速比,即泵送效率,为气举泵提供了可行的工作范围。

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