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22387

Numerical Investigation of Film Cooling over a Flat Plate with Varying Injection Angle

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Last updated: 04 Jan 2025

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Abstract

Numerical investigations have been conducted in order to find appropriate turbulence model and near wall treatments to study the effect of injection angle. For this purpose, different turbulence models such as k- ε models (standard, RNG and realizable), and k- ω models (standard and the Shear Stress Transport (SST) model) were examined to solve for the most convenient accurate prediction of the flow field. In addition, two different wall functions (standard wall function and enhanced two-layer wall function were tested and compered with the experimental study at two blowing ratios (0.5, 1) and two injection angles (35o, 55o). It was found that the realizable k–ε model with enhanced all treatment (two-layer approach) was in reasonable agreement with experimental data, which proved its advantage as compared with other turbulence models. So the realizable k–ε model with enhanced wall treatment (two-layer approach) was selected in this paper to study the effect of injection angle variation. The film cooling geometry in the present paper is similar to that used in a previous study. The coolant flow temperature was kept constant at 188 K at a velocity 6.25 m/s and a constant density ratio of 1.6. The results showed a reduction in effectiveness for the injection angle of 55o as compared to effectiveness for the injection angle of 35o.

DOI

10.21608/asat.2017.22387

Authors

First Name

Abdelaziz

Last Name

Elareibi

MiddleName

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Affiliation

Libyan Armed Forces, Libya.

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Orcid

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First Name

Tarek

Last Name

Elnady

MiddleName

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Affiliation

Egyptian Armed Forces, Egypt.

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First Name

Ali

Last Name

Elmaihy

MiddleName

-

Affiliation

Egyptian Armed Forces, Egypt.

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First Name

Salman

Last Name

Elshmarka

MiddleName

-

Affiliation

Egyptian Armed Forces, Egypt.

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Volume

17

Article Issue

AEROSPACE SCIENCES & AVIATION TECHNOLOGY, ASAT - 17 – April 11 - 13, 2017

Related Issue

4266

Issue Date

2017-04-01

Receive Date

2018-12-19

Publish Date

2017-04-01

Page Start

1

Page End

16

Print ISSN

2090-0678

Online ISSN

2636-364X

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https://asat.journals.ekb.eg/article_22387.html

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https://asat.journals.ekb.eg/service?article_code=22387

Order

24

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Original Article

Type Code

737

Publication Type

Journal

Publication Title

International Conference on Aerospace Sciences and Aviation Technology

Publication Link

https://asat.journals.ekb.eg/

MainTitle

Numerical Investigation of Film Cooling over a Flat Plate with Varying Injection Angle

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Article

Created At

22 Jan 2023