Experimental and Numerical Analysis of the Impeller Backside Cavity in a Centrifugal Compressor for CAES

Author:

Lin ZhihuaORCID,Zuo Zhitao,Li Wei,Sun JiantingORCID,Zhou Xin,Chen HaishengORCID,Zhou Xuezhi

Abstract

Relying on a closed test rig of a high-power intercooling centrifugal compressor for compressed air energy storage (CAES), this study measured the static pressure and static temperature at different radii on the static wall of the impeller backside cavity (IBC) under variable rotating speeds. Simultaneously, the coupled computations of all mainstream domains with IBC or not were used for comparative analysis of the aerodynamic performances of the compressor and the internal flow field in IBC. The results show that IBC has a significant impact on coupling characteristics including pressure ratio, efficiency, torque, shaft power, and axial thrust of the centrifugal compressor. The gradients of radial static pressure and static temperature in IBC both increase with the decrease of mainstream flow or the increase of rotating speed, whose distributions are different under variable rotating speeds due to the change of the aerodynamic parameters of mainstream.

Funder

International Partnership Program, Bureau of International Cooperation of Chinese Academy of Sciences

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous)

Reference27 articles.

1. Progress in electrical energy storage system: A critical review

2. Flow Field Structures of the Impeller Backside Cavity and Its Influences on the Centrifugal Compressor;Sun,2009

3. Influence of Cavity Flows Modeling on Centrifugal Compressor Stages Performance Prediction across Different Flow Coefficient Impellers;Guidotti,2014

4. Vortex breakdown in a rotating cylindrical cavity

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