Author:
Nejad Jafar,Riasi Alireza,Nourbakhsh Ahmad
Abstract
Purpose
Regenerative flow pump (RFP) is a rotodynamic turbomachine capable of developing high pressure rise at low flow rates. This paper aims to numerically investigate the performance of a regenerative pump considering the modification in blade and casing geometry.
Design/methodology/approach
The radial blade shape was changed to the bucket form and a core is added to flow path. A parametric study was performed to improve the performance of the pump. Thus, the effect of change in blade angle, chord, height, pitch to chord ratio and also inlet port on the performance of RFP was investigated.
Findings
Results showed that the modified blade angle to achieve the maximum efficiency is about 41 degree. Also, the most efficient point occurs close to pitch/chord = 0.4 and by reducing the axial chord, efficiency of the pump increases. It was found that better efficiency will be achieved by increasing the “Arc of admission”, but there are limitations of manufacturing. It was observed that the performance curves shifted towards lower flow coefficients by reducing height of blades.
Originality/value
To improve the characteristics of regenerative pump, the blade shape changed to the bucket form (airfoil blades with identical inlet and outlet angle) and a core is added to flow path. A parametric study has been accomplished to see the influence of some important parameters on the performance of the pump.
Subject
Applied Mathematics,Computer Science Applications,Mechanical Engineering,Mechanics of Materials
Reference29 articles.
1. Abdalla, H.M.M. (1981), “A Theoretical and experimental investigation of the regenerative pump with airfoil blades”, PhD thesis, Applied Mechanics Branch, Royal Military College of Science.
2. Effects of volute curvature on performance of a low specific-speed centrifugal pump at design and off-design conditions;Journal of Turbomachinery,2015
3. Leakage effects on the performance characteristics of a regenerative blower for the hydrogen recirculation of a PEM fuel cell;Energy Conversion and Management,2012
4. Comparison between 3D and 1D simulations of a regenerative blower for fuel cell applications;Energy Conversion and Management,2012
Cited by
18 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献