Three dimensional reconstruction of high-speed premixed flames with three dimensional computer tomography 20-directional quantitative schlieren camera by instantaneous density distribution

To observe unsteady high speed turbulent flames in 3D (three dimensional), application of non-scanning 3D-CT (Three Dimensional Computer Tomography) using multi-directional quantitative schlieren system on instantaneous density distribution of premixed flames is proposed. In present study, this schl...

Full description

Saved in:
Bibliographic Details
Main Authors: Abd. Razak, I. F., Ishino, Y., Hayashi, N., Yu, Saiki, Yahya, Wira Jazair
Format: Article
Published: Penerbit Akademia Baru 2015
Subjects:
Online Access:http://eprints.utm.my/id/eprint/60495/
https://akademiabaru.com/submit/index.php/arfmts/article/view/2056
Tags: Add Tag
No Tags, Be the first to tag this record!
id my.utm.60495
record_format eprints
spelling my.utm.604952021-12-14T01:03:27Z http://eprints.utm.my/id/eprint/60495/ Three dimensional reconstruction of high-speed premixed flames with three dimensional computer tomography 20-directional quantitative schlieren camera by instantaneous density distribution Abd. Razak, I. F. Ishino, Y. Hayashi, N. Yu, Saiki Yahya, Wira Jazair TA Engineering (General). Civil engineering (General) To observe unsteady high speed turbulent flames in 3D (three dimensional), application of non-scanning 3D-CT (Three Dimensional Computer Tomography) using multi-directional quantitative schlieren system on instantaneous density distribution of premixed flames is proposed. In present study, this schlieren imaging system uses flash light as light source. This 3D-CT Schlieren system simultaneously shot the images from 20 directions at the same time and a CT algorithm is used for the 3D-CT reconstruction of the images obtained from the schlieren photography. In this paper, 3DCT reconstruction of instantaneous density distribution of a high speed turbulent flames of exit velocities of 8.0 m/s and 10.0 m/s on burner nozzle diameter of 4.2 mm, and exit velocity of 8.0 m/s on burner nozzle diameter of 10 mm has been succesfully obtained. A 3D model of burner nozzle diameter of 4.2 with velocity of 10 m/s has also been successfully constructed. Penerbit Akademia Baru 2015-11 Article PeerReviewed Abd. Razak, I. F. and Ishino, Y. and Hayashi, N. and Yu, Saiki and Yahya, Wira Jazair (2015) Three dimensional reconstruction of high-speed premixed flames with three dimensional computer tomography 20-directional quantitative schlieren camera by instantaneous density distribution. Journal Of Advanced Research In Fluid Mechanics And Thermal Sciences, 15 (1). pp. 1-16. ISSN 2289-7879 https://akademiabaru.com/submit/index.php/arfmts/article/view/2056
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic TA Engineering (General). Civil engineering (General)
spellingShingle TA Engineering (General). Civil engineering (General)
Abd. Razak, I. F.
Ishino, Y.
Hayashi, N.
Yu, Saiki
Yahya, Wira Jazair
Three dimensional reconstruction of high-speed premixed flames with three dimensional computer tomography 20-directional quantitative schlieren camera by instantaneous density distribution
description To observe unsteady high speed turbulent flames in 3D (three dimensional), application of non-scanning 3D-CT (Three Dimensional Computer Tomography) using multi-directional quantitative schlieren system on instantaneous density distribution of premixed flames is proposed. In present study, this schlieren imaging system uses flash light as light source. This 3D-CT Schlieren system simultaneously shot the images from 20 directions at the same time and a CT algorithm is used for the 3D-CT reconstruction of the images obtained from the schlieren photography. In this paper, 3DCT reconstruction of instantaneous density distribution of a high speed turbulent flames of exit velocities of 8.0 m/s and 10.0 m/s on burner nozzle diameter of 4.2 mm, and exit velocity of 8.0 m/s on burner nozzle diameter of 10 mm has been succesfully obtained. A 3D model of burner nozzle diameter of 4.2 with velocity of 10 m/s has also been successfully constructed.
format Article
author Abd. Razak, I. F.
Ishino, Y.
Hayashi, N.
Yu, Saiki
Yahya, Wira Jazair
author_facet Abd. Razak, I. F.
Ishino, Y.
Hayashi, N.
Yu, Saiki
Yahya, Wira Jazair
author_sort Abd. Razak, I. F.
title Three dimensional reconstruction of high-speed premixed flames with three dimensional computer tomography 20-directional quantitative schlieren camera by instantaneous density distribution
title_short Three dimensional reconstruction of high-speed premixed flames with three dimensional computer tomography 20-directional quantitative schlieren camera by instantaneous density distribution
title_full Three dimensional reconstruction of high-speed premixed flames with three dimensional computer tomography 20-directional quantitative schlieren camera by instantaneous density distribution
title_fullStr Three dimensional reconstruction of high-speed premixed flames with three dimensional computer tomography 20-directional quantitative schlieren camera by instantaneous density distribution
title_full_unstemmed Three dimensional reconstruction of high-speed premixed flames with three dimensional computer tomography 20-directional quantitative schlieren camera by instantaneous density distribution
title_sort three dimensional reconstruction of high-speed premixed flames with three dimensional computer tomography 20-directional quantitative schlieren camera by instantaneous density distribution
publisher Penerbit Akademia Baru
publishDate 2015
url http://eprints.utm.my/id/eprint/60495/
https://akademiabaru.com/submit/index.php/arfmts/article/view/2056
_version_ 1720436927251873792
score 13.160551