Structural and Thermal Analysis of F Class Gas Turbine Compressor Blade

In this study, the structural and thermal analysis of the final stage compressor rotor blades, which are currently used on-site, is performed by using the ANSYS program. For that reason, a 3D model of the existing compressor blade has been done. Later on, this model was transferred to the ANSYS prog...

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Main Authors: Fikret Polat, Mustafa Gerengi
Format: Article
Language:English
Published: Düzce University 2022-04-01
Series:Düzce Üniversitesi Bilim ve Teknoloji Dergisi
Subjects:
Online Access:https://dergipark.org.tr/tr/download/article-file/1902678
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author Fikret Polat
Mustafa Gerengi
author_facet Fikret Polat
Mustafa Gerengi
author_sort Fikret Polat
collection DOAJ
description In this study, the structural and thermal analysis of the final stage compressor rotor blades, which are currently used on-site, is performed by using the ANSYS program. For that reason, a 3D model of the existing compressor blade has been done. Later on, this model was transferred to the ANSYS program and analyzed. In the analysis, the parameters formed in the blade geometry were determined. By creating a design geometry with the selected parameters, the stress of the existing blade under operating conditions was examined. All external parameters in this study were taken from an F-class gas turbine operating under real field conditions. The stresses of the obtained values in different regions on the blade were examined. This study is also a reverse engineering study and the effects of real field conditions on the compressor blades have been analyzed.
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spelling doaj.art-8fca5f4aa747467f8e3111868824cc852024-02-21T14:07:24ZengDüzce UniversityDüzce Üniversitesi Bilim ve Teknoloji Dergisi2148-24462022-04-011021045106610.29130/dubited.97719297Structural and Thermal Analysis of F Class Gas Turbine Compressor BladeFikret Polat0Mustafa Gerengi1DÜZCE ÜNİVERSİTESİDÜZCE ÜNİVERSİTESİIn this study, the structural and thermal analysis of the final stage compressor rotor blades, which are currently used on-site, is performed by using the ANSYS program. For that reason, a 3D model of the existing compressor blade has been done. Later on, this model was transferred to the ANSYS program and analyzed. In the analysis, the parameters formed in the blade geometry were determined. By creating a design geometry with the selected parameters, the stress of the existing blade under operating conditions was examined. All external parameters in this study were taken from an F-class gas turbine operating under real field conditions. The stresses of the obtained values in different regions on the blade were examined. This study is also a reverse engineering study and the effects of real field conditions on the compressor blades have been analyzed.https://dergipark.org.tr/tr/download/article-file/1902678gas turbinestructural and thermal analysisturbine bladegaz türbiniyapısal ve termal analiztürbin kanadı
spellingShingle Fikret Polat
Mustafa Gerengi
Structural and Thermal Analysis of F Class Gas Turbine Compressor Blade
Düzce Üniversitesi Bilim ve Teknoloji Dergisi
gas turbine
structural and thermal analysis
turbine blade
gaz türbini
yapısal ve termal analiz
türbin kanadı
title Structural and Thermal Analysis of F Class Gas Turbine Compressor Blade
title_full Structural and Thermal Analysis of F Class Gas Turbine Compressor Blade
title_fullStr Structural and Thermal Analysis of F Class Gas Turbine Compressor Blade
title_full_unstemmed Structural and Thermal Analysis of F Class Gas Turbine Compressor Blade
title_short Structural and Thermal Analysis of F Class Gas Turbine Compressor Blade
title_sort structural and thermal analysis of f class gas turbine compressor blade
topic gas turbine
structural and thermal analysis
turbine blade
gaz türbini
yapısal ve termal analiz
türbin kanadı
url https://dergipark.org.tr/tr/download/article-file/1902678
work_keys_str_mv AT fikretpolat structuralandthermalanalysisoffclassgasturbinecompressorblade
AT mustafagerengi structuralandthermalanalysisoffclassgasturbinecompressorblade