The effect of the blowing and suction from one or two positions over the suction surface of NACA0012 airfoil on aerodynamic performance in turbulent flow
One approach to improve the aerodynamic performance of airfoils and hydrofoils is inject a small amount of energy to the system (such as fluid injection or suction on the surface), to change the lift and drag. In fact, surface suction and blowing of the fluid can improve the pressure distribution an...
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Format: | Article |
Language: | fas |
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Semnan University
2017-12-01
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Series: | مجله مدل سازی در مهندسی |
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Online Access: | https://modelling.semnan.ac.ir/article_2849_7ffd1e021d24e32899f0dcd939564517.pdf |
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author | Pooria Akbarzadeh Mahsa Mostafavi |
author_facet | Pooria Akbarzadeh Mahsa Mostafavi |
author_sort | Pooria Akbarzadeh |
collection | DOAJ |
description | One approach to improve the aerodynamic performance of airfoils and hydrofoils is inject a small amount of energy to the system (such as fluid injection or suction on the surface), to change the lift and drag. In fact, surface suction and blowing of the fluid can improve the pressure distribution and velocity gradient on the airfoil/hydrofoil surfaces and modify the flow separation point. Therefore, in this study the hydrodynamic behavior of turbulent flows over an airfoil exposed to the injection and suction of fluid in a part of its upper surface is discussed. Firstly, the behavior of the airfoil under one position of the injection or suction and then under two positions of injection or suction are investigated. In this simulation, the FLUENT software is used. The aim of this study is to investigate the effect of the power, the number, the position and the angle of blowing or suction on the hydrodynamic performance of the airfoil. The most important results are the reduction of 10 to 50 percent of the drag and the increase of 5 to 10 percent of the lift (for the blowing) and the reduction of 5 to 30 percent of the drag and the increase of 5 to 10 percent of the lift (for the suction) by considering two positions of injection in comparison to one position. |
first_indexed | 2024-03-07T22:06:54Z |
format | Article |
id | doaj.art-246e49842a374325b44c88a67ed5ad40 |
institution | Directory Open Access Journal |
issn | 2008-4854 2783-2538 |
language | fas |
last_indexed | 2024-03-07T22:06:54Z |
publishDate | 2017-12-01 |
publisher | Semnan University |
record_format | Article |
series | مجله مدل سازی در مهندسی |
spelling | doaj.art-246e49842a374325b44c88a67ed5ad402024-02-23T19:04:43ZfasSemnan Universityمجله مدل سازی در مهندسی2008-48542783-25382017-12-01155133134010.22075/jme.2017.28492849The effect of the blowing and suction from one or two positions over the suction surface of NACA0012 airfoil on aerodynamic performance in turbulent flowPooria Akbarzadeh0Mahsa Mostafavi1دانشکده مکانیکدانشکده مکانیکOne approach to improve the aerodynamic performance of airfoils and hydrofoils is inject a small amount of energy to the system (such as fluid injection or suction on the surface), to change the lift and drag. In fact, surface suction and blowing of the fluid can improve the pressure distribution and velocity gradient on the airfoil/hydrofoil surfaces and modify the flow separation point. Therefore, in this study the hydrodynamic behavior of turbulent flows over an airfoil exposed to the injection and suction of fluid in a part of its upper surface is discussed. Firstly, the behavior of the airfoil under one position of the injection or suction and then under two positions of injection or suction are investigated. In this simulation, the FLUENT software is used. The aim of this study is to investigate the effect of the power, the number, the position and the angle of blowing or suction on the hydrodynamic performance of the airfoil. The most important results are the reduction of 10 to 50 percent of the drag and the increase of 5 to 10 percent of the lift (for the blowing) and the reduction of 5 to 30 percent of the drag and the increase of 5 to 10 percent of the lift (for the suction) by considering two positions of injection in comparison to one position.https://modelling.semnan.ac.ir/article_2849_7ffd1e021d24e32899f0dcd939564517.pdfflow controlblowing &suctionlift coefficientdrag coefficientflow injection angle |
spellingShingle | Pooria Akbarzadeh Mahsa Mostafavi The effect of the blowing and suction from one or two positions over the suction surface of NACA0012 airfoil on aerodynamic performance in turbulent flow مجله مدل سازی در مهندسی flow control blowing & amp suction lift coefficient drag coefficient flow injection angle |
title | The effect of the blowing and suction from one or two positions over the suction surface of NACA0012 airfoil on aerodynamic performance in turbulent flow |
title_full | The effect of the blowing and suction from one or two positions over the suction surface of NACA0012 airfoil on aerodynamic performance in turbulent flow |
title_fullStr | The effect of the blowing and suction from one or two positions over the suction surface of NACA0012 airfoil on aerodynamic performance in turbulent flow |
title_full_unstemmed | The effect of the blowing and suction from one or two positions over the suction surface of NACA0012 airfoil on aerodynamic performance in turbulent flow |
title_short | The effect of the blowing and suction from one or two positions over the suction surface of NACA0012 airfoil on aerodynamic performance in turbulent flow |
title_sort | effect of the blowing and suction from one or two positions over the suction surface of naca0012 airfoil on aerodynamic performance in turbulent flow |
topic | flow control blowing & amp suction lift coefficient drag coefficient flow injection angle |
url | https://modelling.semnan.ac.ir/article_2849_7ffd1e021d24e32899f0dcd939564517.pdf |
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