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壁面粗糙度对压缩空气储能大功率轴流空气透平性能影响研究

辛明 刘通 王旭 赵芝庆 张文凯 袁雪萌 李博文 郝沛

储能科学与技术2026,Vol.15Issue(6):2185-2196,12.
储能科学与技术2026,Vol.15Issue(6):2185-2196,12.DOI:10.19799/j.cnki.2095-4239.2025.1063

壁面粗糙度对压缩空气储能大功率轴流空气透平性能影响研究

Investigation of influence of wall roughness on performance of high-power axial flow air turbine for compressed air energy storage

辛明 1刘通 1王旭 1赵芝庆 1张文凯 1袁雪萌 1李博文 1郝沛1

作者信息

  • 1. 国华(诸城)风力发电有限公司,山东 潍坊 262200
  • 折叠

摘要

Abstract

Compressed air energy storage(CAES)is a key technology for large-scale power storage.As a core component for energy conversion,a high-power axial flow turbine significantly influences the overall efficiency of an energy storage station.During actual operation,changes in turbine blade surface roughness,which are caused by processing techniques and long-term wear,significantly affect the turbine performance and internal flow.However,the mechanism of the roughness influence for large-power multistage multilevel axial flow turbines with air as the working medium remains unclear.This study investigates the influence of surface roughness on the aerodynamic performance and internal flow characteristics of a high-power,three-stage multilevel axial flow turbine within a 350-MW compressed air energy storage system using high-precision numerical simulation methods.The results indicate that increased surface roughness significantly reduces the mass flow rate and isentropic efficiency of all turbine stages,with the first stage exhibiting the most significant efficiency reduction.Surface roughness intensifies flow losses by thickening the suction-side boundary layer,expanding the chordwise low-speed zone on the blade,and diminishing the kinetic energy within the high-speed core region of the flow field.The performance of the first-stage turbine was more significantly affected by roughness than that of the second and third stages.As the roughness increased,the intensity of the blade surface vorticity weakened,and the separation point moved upstream.This study reveals the influence law of wall roughness on the performance of multistage turbines,providing a theoretical basis for high-precision aerodynamic design,surface process control,and operation and maintenance strategies for high-power axial-flow turbines in CAES power stations.

关键词

压缩空气储能/轴流透平/壁面粗糙度/等熵效率

Key words

compressed air energy storage/axial flow turbine/wall roughness/isentropic efficiency

分类

机械制造

引用本文复制引用

辛明,刘通,王旭,赵芝庆,张文凯,袁雪萌,李博文,郝沛..壁面粗糙度对压缩空气储能大功率轴流空气透平性能影响研究[J].储能科学与技术,2026,15(6):2185-2196,12.

基金项目

国家能源集团科技创新项目(GJNY-23-71-1). (GJNY-23-71-1)

储能科学与技术

2095-4239

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