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Effect of Bubble Size and Angle of Tapering Upriser Pipe on the Performance of Airlift Pumps

机译:气泡尺寸和锥度上升管角度对气举泵性能的影响

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摘要

Airlift pumps are devices with the ability to lift liquid phase by injecting the gas phase. Parameters that affect the performance of these pumps are divided into two groups. The first group contains design parameters such as diameter of the pipe, tapering angle of the upriser pipe, and the submergence ratio, which is the ratio of immersed length to the total length of the upriser. The second group includes operating parameters such as the gas flow rate, bubble diameter, bubble distribution, and inlet gas pressure. In this research, the performance of an airlift pump is investigated numerically for different submergence ratios and different diameter of the upriser pipe. For this purpose, an airlift pump with a riser length of 914 mm and different diameters (6, 8, and 10 mm) and seven tapering angles (0°, 0.25°, 0.5°, 1°, 1.5°, 2°, and 3°) is numerically modeled and analyzed. Different submergence ratios are used: 0.4, 0.6, and 0.8. The numerical results are compared with the existing experimental data in the literature and show reasonable agreement. The results indicate that decrease in size of the bubble diameter increases mass flow rate of liquid at constant submergence ratios. The present study reports the improved performance of this pump with decrease in bubble size and increase in angle of tapering upriser pipe. Moreover, the results show that the tapering upriser pipe with 3° tapering angle gives the highest efficiency at nearly all submergence ratios. Further, the highest efficiency of the pump is shown to be at the largest submergence ratio.
机译:气举泵是能够通过注入气相来提升液相的设备。影响这些泵性能的参数分为两组。第一组包含设计参数,例如管道直径,上升管的锥角和浸入率,即浸入长度与上升器总长度之比。第二组包括操作参数,例如气体流速,气泡直径,气泡分布和进气压力。在这项研究中,对升空管的不同浸没率和不同直径对气举泵的性能进行了数值研究。为此目的,需要使用长度为914 mm的立管,直径(6、8和10 mm)不同并且具有七个锥角(0°,0.25°,0.5°,1°,1.5°,2°和3°)进行了数值建模和分析。使用不同的浸入比:0.4、0.6和0.8。将数值结果与文献中已有的实验数据进行比较,并显示出合理的一致性。结果表明,在恒定浸入比下,气泡直径的减小会增加液体的质量流量。本研究报告此泵的性能得到改善,气泡尺寸减小,上升管的锥角增加。此外,结果表明,锥度为3°的锥度上升管在几乎所有浸入率下均具有最高效率。此外,泵的最高效率显示为最大浸入率。

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