Analysis on flow separation characteristics of last stage blade in steam turbine under small volume flow condition

The inlet steam flow of steam turbine is obviously reduced and even in the state of small volume flow when the thermal power unit is involved in peak load operation, which greatly influences the safety of steam turbine. The last stage flow field of steam turbine under small volume flow condition is...

Full description

Bibliographic Details
Main Authors: Cao Lihua, Wang Wenlong, Luo Huanhuan, Hu Pengfei, Li Zhengwen, Zhang Yanjun, Ma Tingshan
Format: Article
Language:English
Published: VINCA Institute of Nuclear Sciences 2019-01-01
Series:Thermal Science
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/0354-9836/2019/0354-98361900025C.pdf
id doaj-7b5be66dcc8042798e950b722bac4a68
record_format Article
spelling doaj-7b5be66dcc8042798e950b722bac4a682021-01-02T13:10:15ZengVINCA Institute of Nuclear SciencesThermal Science0354-98362019-01-01235 Part B3239325010.2298/TSCI180904025C0354-98361900025CAnalysis on flow separation characteristics of last stage blade in steam turbine under small volume flow conditionCao Lihua0Wang Wenlong1Luo Huanhuan2Hu Pengfei3Li Zhengwen4Zhang Yanjun5Ma Tingshan6Northeast Electric Power University, School of Energy and Power Engineering, Jilin, ChinaNortheast Electric Power University, School of Energy and Power Engineering, Jilin, ChinaState Grid Liaoning Electric PowerSupply Co., Ltd. Liaoning, ChinaNortheast Electric Power University, School of Energy and Power Engineering, Jilin, ChinaState Grid Liaoning Electric PowerSupply Co., Ltd. Liaoning, ChinaState Grid Liaoning Electric PowerSupply Co., Ltd. Liaoning, ChinaXI’AN Thermal Power Research Institute Co., Ltd. Xian, ChinaThe inlet steam flow of steam turbine is obviously reduced and even in the state of small volume flow when the thermal power unit is involved in peak load operation, which greatly influences the safety of steam turbine. The last stage flow field of steam turbine under small volume flow condition is calculated by the CFX to study the formation, development, influencing range, and the variation rule of the flow separation vortex cores. The results show that the flow separation vortices appear near last stage blade at 30% of the rated volume flow. With the decrease of volume flow, the flow separation vortices gradually spread to the root of blade. When the volume flow decreases to 8% of the rated volume flow, the flow separation vortices almost occupy the whole blade. The position of the flow separation vortex cores shifts from 72.7% of the relative blade height to 49.1%. The results of this paper lay a foundation for the safety analysis of the last stage blade in the steam turbine under the small volume flow condition.http://www.doiserbia.nb.rs/img/doi/0354-9836/2019/0354-98361900025C.pdfsteam turbinelast stage bladesmall volume flowflow angleflow separation vortices
collection DOAJ
language English
format Article
sources DOAJ
author Cao Lihua
Wang Wenlong
Luo Huanhuan
Hu Pengfei
Li Zhengwen
Zhang Yanjun
Ma Tingshan
spellingShingle Cao Lihua
Wang Wenlong
Luo Huanhuan
Hu Pengfei
Li Zhengwen
Zhang Yanjun
Ma Tingshan
Analysis on flow separation characteristics of last stage blade in steam turbine under small volume flow condition
Thermal Science
steam turbine
last stage blade
small volume flow
flow angle
flow separation vortices
author_facet Cao Lihua
Wang Wenlong
Luo Huanhuan
Hu Pengfei
Li Zhengwen
Zhang Yanjun
Ma Tingshan
author_sort Cao Lihua
title Analysis on flow separation characteristics of last stage blade in steam turbine under small volume flow condition
title_short Analysis on flow separation characteristics of last stage blade in steam turbine under small volume flow condition
title_full Analysis on flow separation characteristics of last stage blade in steam turbine under small volume flow condition
title_fullStr Analysis on flow separation characteristics of last stage blade in steam turbine under small volume flow condition
title_full_unstemmed Analysis on flow separation characteristics of last stage blade in steam turbine under small volume flow condition
title_sort analysis on flow separation characteristics of last stage blade in steam turbine under small volume flow condition
publisher VINCA Institute of Nuclear Sciences
series Thermal Science
issn 0354-9836
publishDate 2019-01-01
description The inlet steam flow of steam turbine is obviously reduced and even in the state of small volume flow when the thermal power unit is involved in peak load operation, which greatly influences the safety of steam turbine. The last stage flow field of steam turbine under small volume flow condition is calculated by the CFX to study the formation, development, influencing range, and the variation rule of the flow separation vortex cores. The results show that the flow separation vortices appear near last stage blade at 30% of the rated volume flow. With the decrease of volume flow, the flow separation vortices gradually spread to the root of blade. When the volume flow decreases to 8% of the rated volume flow, the flow separation vortices almost occupy the whole blade. The position of the flow separation vortex cores shifts from 72.7% of the relative blade height to 49.1%. The results of this paper lay a foundation for the safety analysis of the last stage blade in the steam turbine under the small volume flow condition.
topic steam turbine
last stage blade
small volume flow
flow angle
flow separation vortices
url http://www.doiserbia.nb.rs/img/doi/0354-9836/2019/0354-98361900025C.pdf
work_keys_str_mv AT caolihua analysisonflowseparationcharacteristicsoflaststagebladeinsteamturbineundersmallvolumeflowcondition
AT wangwenlong analysisonflowseparationcharacteristicsoflaststagebladeinsteamturbineundersmallvolumeflowcondition
AT luohuanhuan analysisonflowseparationcharacteristicsoflaststagebladeinsteamturbineundersmallvolumeflowcondition
AT hupengfei analysisonflowseparationcharacteristicsoflaststagebladeinsteamturbineundersmallvolumeflowcondition
AT lizhengwen analysisonflowseparationcharacteristicsoflaststagebladeinsteamturbineundersmallvolumeflowcondition
AT zhangyanjun analysisonflowseparationcharacteristicsoflaststagebladeinsteamturbineundersmallvolumeflowcondition
AT matingshan analysisonflowseparationcharacteristicsoflaststagebladeinsteamturbineundersmallvolumeflowcondition
_version_ 1724354052338221056