DocumentCode
3593043
Title
Flow performance analysis on shutoff condition in centrifugal pump based on CFD simulation
Author
Si Huang ; Guangqi Qiu ; Xianghui Su ; Guowei Ou
Author_Institution
South China Univ. of Technol., Guangzhou, China
fYear
2014
Firstpage
1
Lastpage
5
Abstract
CFD simulations on flow field of centrifugal pumps at shutoff are generally performed by means of minor-flow assumption, which are different from real operating conditions and hard to well predict pump performances at shutoff. In this paper, therefore, the zero-flow boundary condition was taken to proceed to a numerical simulation of unsteady flow for the type IS125 centrifugal pump. The pump performances were predicted and verified by the pump performance test. The numerical result shows that there are different distributions of flow field and hydraulic load in the impeller channels, leading to the serious fluctuations of pumps performance. At the shutoff, the volute tongue suffers from the most serious flow impact among all operating conditions. It is also found that the channels of the impeller near the upstream of volute are water-discharging, but the channels of the impeller near the downstream of volute are water-inhaling. These results indicate that impeller channels have different flow ability while rotating at different positions. The numerical method and results can be benefit and referred for the operation and the design of centrifugal pumps.
Keywords
computational fluid dynamics; flow instability; flow simulation; impellers; numerical analysis; pumps; CFD simulation; centrifugal pump design; centrifugal pump flow field; flow ability; flow performance analysis; hydraulic load; impeller channels; minor-flow assumption; numerical simulation; pump performance; pump performance test; shutoff condition; type IS125 centrifugal pump; unsteady flow; volute downstream; volute tongue; volute upstream; water-discharging; water-inhaling; zero-flow boundary condition; Impeller Channel Flow Ability; Numerical Simulation; Performances Prediction; Shutoff of Centrifugal Pumps; Unsteady Flow Field;
fLanguage
English
Publisher
iet
Conference_Titel
Fluid Machinery and Fluid Engineering, 2014 ISFMFE - 6th International Symposium on
Print_ISBN
978-1-84919-907-0
Type
conf
DOI
10.1049/cp.2014.1142
Filename
7124063
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