Performance characteristics of a small water-hammer head pump

Q2 Engineering
K. Manohar, A. Adeyanju, Kureem Vialva
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引用次数: 1

Abstract

Abstract. Many rural farming areas are located far from a reliable electricity supply; hence, obtaining a reliable source of water for crops and livestock can prove to be an expensive venture. A water pump operating on the water-hammer effect requires no external power source and can serve as an effective means of pumping water to a higher altitude once a reliable supply is available. A low-cost small water-hammer head pump was designed to operate on the water-hammer head effect created by the sudden stoppage of a flowing fluid. This design consisted of an inlet section followed by the pump body, a pressure section and an outlet. The experimental set-up for testing the water-hammer head pump was designed with a variable head input and an adjustable head output. For each test configuration, a total of 10 samples of pump supply water and pump exhausted water were collected. The water samples were collected for 30 s in each case. The results showed a non-linear variation of water flow with respect to pump outlet height. The pump was capable of delivering water to a maximum height of 8 to 10 times the height of the input head. The pump operated at average efficiencies of 26 %, 16 % and 6 % when the delivery height was 2, 4 and 6 times the input head height, respectively. There was a 5 % incremental decrease in pump efficiency as the delivery height increased in increments of the corresponding input head height.
小型水锤头泵的性能特点
摘要许多农村农业地区远离可靠的电力供应;因此,为农作物和牲畜获得可靠的水源可能是一项昂贵的事业。在水锤效应下运行的水泵不需要外部电源,一旦有可靠的供水,就可以作为将水抽到更高海拔的有效手段。低成本小型水锤泵设计用于在流动流体突然停止产生的水锤效应下运行。这种设计包括一个入口部分,然后是泵体、一个压力部分和一个出口。设计了具有可变水头输入和可调水头输出的水锤泵试验装置。对于每个测试配置,总共收集了10个泵供水和泵排水的样本。采集了30个水样 s。结果表明,水流量随泵出口高度呈非线性变化。该泵能够将水输送到输入头高度的8至10倍的最大高度。该泵的平均效率为26 %, 16 % 和6 % 当输送高度分别是输入头高度的2倍、4倍和6倍时。有一个5 %泵效率随着输送高度的增加而逐渐降低,而相应的输入水头高度增加。
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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来源期刊
Drinking Water Engineering and Science
Drinking Water Engineering and Science Environmental Science-Water Science and Technology
CiteScore
3.90
自引率
0.00%
发文量
3
审稿时长
40 weeks
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