Effect of Rotation Speed and Flow Rate on Slip Factor in a Centrifugal Pump

Author:

Chen Bo1ORCID,Song Baolin1,Tu Bicheng2,Zhang Yiming3,Li Xiaojun1,Li Zhigang1,Zhu Zuchao1

Affiliation:

1. National-Provincial Joint Engineering Laboratory for Fluid Transmission System Technology, Zhejiang Sci-Tech University, No. 2 Avenue, Hangzhou, China

2. Ebara Great Pumps Co. LTD., No. 111, Fengdu 1st Road, Wenzhou, Ruian, China

3. Hangzhou New-Asia Cryogenic Technology Co., Ltd., No. 391, Wener Road, Hangzhou, China

Abstract

This work analyzes the causes of the slip phenomenon in the impeller on the basis of the internal flow mechanism. Detailed optical measurements of the flow inside the rotation passages of a five-bladed centrifugal pump impeller are obtained through particle image velocimetry (PIV). On the basis of experimental data, the deviation coefficient of slip velocity is proposed and then revised according to the slip factor calculation formula of Stechkin. Results show that, at the same rotation speed, the slip factor increases with the flow rate and reaches the maximum value at 1.0 QBEP flow rate. At different rotation speeds, the slip factor increases with the rotation speed and shows a relatively large variation range. Moreover, a revised slip factor formula is proposed. The modified model is suitable for the correction of slip factor at part-load flow rates and serves as a guide for the hydraulic performance design and prediction of centrifugal pumps.

Funder

National Natural Science Foundation of China

Publisher

Hindawi Limited

Subject

Mechanical Engineering,Mechanics of Materials,Geotechnical Engineering and Engineering Geology,Condensed Matter Physics,Civil and Structural Engineering

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