Investigations of hydraulic operating conditions of air lift pump with three types of air-water mixers

Marek Kalenik
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引用次数: 7

Abstract

Abstract: Investigations of hydraulic operating conditions of air lift pump with three types of air-water mixers. The paper presents the analysis of results of the investigations concerning the influence of various constructive solutions of the air-water mixers on hydraulic operating conditions of the air lift pump. The scope of the investigations encompassed the determination of characteristics of delivery head and delivery rate for three types of air-water mixers applied in the constructed air lift pump. Using the obtained results, the efficiency of the three types of air-water mixers applied in this air lift pump was determined. The analysis was carried out and there was checked whether the improved analytical Stenning-Martin model can be used to design air lift pumps with the air-water mixers of these types. The highest capacity in the water transport was reached by the air lift pump with the 1st type air-water mixer, the lowest one – with the 3rd type air-water mixer. The water flow in the air lift pump increases along with the rise in the air flow. The lower are the hydraulic losses generated during flow of the air flux by the air-water mixer, the higher is the air lift pump capacity. Along with the rise in the water delivery head, the capacity of the air lift pump decreases. The highest efficiency is reached by the air lift pump with the 1st type air-water mixer, the lowest – with the 3st type air-water mixer. The efficiency of the air lift pump for the three investigated types of air-water mixers decreases along with the rise in air flow rate and water delivery head. The values of submergence ratio (h/L) of the delivery pipe, calculated with the use of the improved analytical Stenning-Martin model, coincide quite well with the values of h/L determined from the measurements.
三种空气-水混合器气举泵液压工况研究
摘要:对三种空气-水混合器的气举泵液压工况进行了研究。本文分析了空气-水混合器的各种构造方案对气举泵水力工况的影响。调查的范围包括确定在建造的空气提升泵中应用的三种类型的空气-水混合器的输送头和输送速率的特性。利用所得结果,确定了三种空气-水混合器在该气升泵中的效率。进行了分析,并验证了改进的解析斯坦宁-马丁模型是否可以用于设计带有这两种类型的空气-水混合器的气升泵。在输水过程中,采用1型空气水混合器的气举泵输水能力最高,采用3型空气水混合器的气举泵输水能力最低。随着空气流量的增加,空气举升泵内的水流量也随之增加。空气-水混合器在气流中产生的水力损失越小,气举泵容量越高。随着送水扬程的升高,气举泵的容量减小。使用第1型空气水混合器时,空气举升泵的效率最高,使用第3型空气水混合器时效率最低。空气提升泵在三种空气-水混合器中的效率随空气流量和送水水头的增大而降低。用改进的斯坦宁-马丁解析模型计算出的输送管浸没比(h/L)值与实测值吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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