Computational and Experimental Investigations of Separation Control of LP Turbine Cascade Blades using Gurney Flaps

The paper reports computational and experimental investigations carried out to control of laminar flow separation in LP turbine cascade blades at low Reynolds numbers. T106 LP turbine blade profile with a chord of 60 mm and blade spacing of 48 mm was used. The blade Zweifel loading factor was 1.03....

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Main Authors: G. Tatpatti, N. Sitaram, K. Viswanath
Format: Article
Language:English
Published: Isfahan University of Technology 2021-01-01
Series:Journal of Applied Fluid Mechanics
Subjects:
Online Access:http://jafmonline.net/JournalArchive/download?file_ID=55140&issue_ID=1012
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spelling doaj-147c5ae7a9fb4b9db921f8218cbfe5382021-01-11T08:24:55ZengIsfahan University of Technology Journal of Applied Fluid Mechanics1735-35722021-01-01143779792.Computational and Experimental Investigations of Separation Control of LP Turbine Cascade Blades using Gurney FlapsG. Tatpatti0N. Sitaram1K. Viswanath2Department of Mechanical Engineering, R. V. College of Engineering, Mysuru Road, R. V. Vidyanikethan Post, Bengaluru - 560059, IndiaDepartment of Mechanical Engineering, Indian Institute of Technology Madras, Chennai – 600036, IndiaDepartment of Mechanical Engineering, Indian Institute of Technology Madras, Chennai – 600036, IndiaThe paper reports computational and experimental investigations carried out to control of laminar flow separation in LP turbine cascade blades at low Reynolds numbers. T106 LP turbine blade profile with a chord of 60 mm and blade spacing of 48 mm was used. The blade Zweifel loading factor was 1.03. Passive separation control device of Gurney flaps (GFs) of different shapes and sizes were used. Computations were carried out in Ansys-CFX. A two-equation eddy-viscosity turbulence model, shear stress transport (SST) was considered for all the computations along with gamma-theta (transition model. Computations were carried out for five different Reynolds numbers. Lift coefficient, total pressure loss coefficient, overall integrated loss coefficient and ratio of lift coefficient to overall integrated loss coefficient were used as a measure of aerodynamic performance for the cascade. From the computations, Flat and Quarter Round GFs of heights of 1.33% of chord were identified as the best configurations. Experiments in a seven bladed cascade were carried out for these configurations along with the basic configuration without GF at five Reynolds numbers. Experimental results agreed well with the computational results for these three cases at the five Reynolds numbers.http://jafmonline.net/JournalArchive/download?file_ID=55140&issue_ID=1012lp turbine cascade; gurney flap; separation control; computational investigations; experimental investigations.
collection DOAJ
language English
format Article
sources DOAJ
author G. Tatpatti
N. Sitaram
K. Viswanath
spellingShingle G. Tatpatti
N. Sitaram
K. Viswanath
Computational and Experimental Investigations of Separation Control of LP Turbine Cascade Blades using Gurney Flaps
Journal of Applied Fluid Mechanics
lp turbine cascade; gurney flap; separation control; computational investigations; experimental investigations.
author_facet G. Tatpatti
N. Sitaram
K. Viswanath
author_sort G. Tatpatti
title Computational and Experimental Investigations of Separation Control of LP Turbine Cascade Blades using Gurney Flaps
title_short Computational and Experimental Investigations of Separation Control of LP Turbine Cascade Blades using Gurney Flaps
title_full Computational and Experimental Investigations of Separation Control of LP Turbine Cascade Blades using Gurney Flaps
title_fullStr Computational and Experimental Investigations of Separation Control of LP Turbine Cascade Blades using Gurney Flaps
title_full_unstemmed Computational and Experimental Investigations of Separation Control of LP Turbine Cascade Blades using Gurney Flaps
title_sort computational and experimental investigations of separation control of lp turbine cascade blades using gurney flaps
publisher Isfahan University of Technology
series Journal of Applied Fluid Mechanics
issn 1735-3572
publishDate 2021-01-01
description The paper reports computational and experimental investigations carried out to control of laminar flow separation in LP turbine cascade blades at low Reynolds numbers. T106 LP turbine blade profile with a chord of 60 mm and blade spacing of 48 mm was used. The blade Zweifel loading factor was 1.03. Passive separation control device of Gurney flaps (GFs) of different shapes and sizes were used. Computations were carried out in Ansys-CFX. A two-equation eddy-viscosity turbulence model, shear stress transport (SST) was considered for all the computations along with gamma-theta (transition model. Computations were carried out for five different Reynolds numbers. Lift coefficient, total pressure loss coefficient, overall integrated loss coefficient and ratio of lift coefficient to overall integrated loss coefficient were used as a measure of aerodynamic performance for the cascade. From the computations, Flat and Quarter Round GFs of heights of 1.33% of chord were identified as the best configurations. Experiments in a seven bladed cascade were carried out for these configurations along with the basic configuration without GF at five Reynolds numbers. Experimental results agreed well with the computational results for these three cases at the five Reynolds numbers.
topic lp turbine cascade; gurney flap; separation control; computational investigations; experimental investigations.
url http://jafmonline.net/JournalArchive/download?file_ID=55140&issue_ID=1012
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AT nsitaram computationalandexperimentalinvestigationsofseparationcontroloflpturbinecascadebladesusinggurneyflaps
AT kviswanath computationalandexperimentalinvestigationsofseparationcontroloflpturbinecascadebladesusinggurneyflaps
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