2018•FME TransactionOpen access

The optimum position of impeller splitter blades of a centrifugal pump equipped with vaned diffuser

Davood Khoeini, Reza Mohammad

Open full text 9 citations

Abstract

The present investigation has been concentrated on the optimum, circumferential position of the impeller splitter blades of a centrifugal pump equipped with vaned diffuser, numerically and experimentally. In fact, five different circumferential positions of the impeller splitter blades of central and shifted by +Pi/10, +2Pi/10, -2Pi/10, -Pi/10 (+ is the rotating direction and Pi is the distance between the two main blades) have been analyzed. Experimental and numerical results reveal good agreement and maximum head deviation of 4.8 percent. Data analyses indicated that overall efficiency of the pump increased by 1.7 percent at BEP, Best Efficient Point, by using the impeller with shifted splitter blades by +2Pi/10 in comparison with the impeller with central splitter blades. Moreover, it is found that the impeller with central splitter blades has the highest head values at all flow rates as it is 7.5 percent higher than shifted splitter blades by -2Pi/10.

About this research paper

What this paper is about

The present investigation has been concentrated on the optimum, circumferential position of the impeller splitter blades of a centrifugal pump equipped with vaned diffuser, numerically and experimentally. In fact, five different circumferential positions of the impeller splitter blades of central and shifted by +Pi/10, +2Pi/10, -2Pi/10, -Pi/10 (+ is the rotating direction and Pi is the distance between the two main blades) have been analyzed. Experimental and numerical results reveal good agreement and maximum head deviation of 4.8 percent. Data analyses indicated that overall efficiency of the pump increased by 1.7 percent at BEP, Best Efficient Point, by using the impeller with shifted splitter blades by +2Pi/10 in comparison with the impeller with central splitter blades. Moreover, it is found that the impeller with central splitter blades has the highest head values at all flow rates as it is 7.5 percent higher than shifted splitter blades by -2Pi/10.

Why it matters

OpenAlex reports 9 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

The present investigation has been concentrated on the optimum, circumferential position of the impeller splitter blades of a centrifugal pump equipped with vaned diffuser, numerically and experimentally. In fact, five different circumferential positions of the impeller splitter blades of central and shifted by +Pi/10, +2Pi/10, -2Pi/10, -Pi/10 (+ is the rotating direction and Pi is the distance between the two main blades) have been analyzed. Experimental and numerical results reveal good agreement and maximum head deviation of 4.8 percent. Data analyses indicated that overall efficiency of the pump increased by 1.7 percent at BEP, Best Efficient Point, by using the impeller with shifted splitter blades by +2Pi/10 in comparison with the impeller with central splitter blades. Moreover, it is found that the impeller with central splitter blades has the highest head values at all flow rates as it is 7.5 percent higher than shifted splitter blades by -2Pi/10.

Key concepts: Impeller, Splitter, Diffuser (optics), Centrifugal pump, Position (finance), Head (geology), Flow (mathematics), Splitter plate

Related papers

Back to paper searchBrowse research topicsOriginal source
The optimum position of impeller splitter blades of a centrifugal pump equipped with vaned diffuser — Research Paper | ScholarLens