Pembangunan teknik kawalan pencemaran menggunakan pembakar berbahan api cecair dengan aliran berpusar

A liquid fuel burner system with curved radial air swirler vane angles with swirl number (SN) variation between 0.046 to 1.911 has been investigated. A combustor with single central fuel nozzle is used to determine the effect of swirl number in emissions formation especially NOX and other emissions...

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Main Authors: Mohd. Jaafar, Mohammad Nazri, Mustafa, Azeman, Musa, Hamidon, Senawi, Yusof, Wan Omar, Wan Zaidi, Abdul Majid, Kamsani, Mohamad Shaiful Ashrul, Ishak
Format: Monograph
Language:English
Published: Faculty of Mechanical Engineering 2005
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Online Access:http://eprints.utm.my/id/eprint/591/1/74088.pdf
http://eprints.utm.my/id/eprint/591/
https://www.academia.edu/21299894/Pembangunan_teknik_kawalan_pencemaran_menggunakan_pembakar_berbahan_api_cecair_dengan_aliran_berpusar
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Institution: Universiti Teknologi Malaysia
Language: English
id my.utm.591
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spelling my.utm.5912017-07-12T08:33:45Z http://eprints.utm.my/id/eprint/591/ Pembangunan teknik kawalan pencemaran menggunakan pembakar berbahan api cecair dengan aliran berpusar Mohd. Jaafar, Mohammad Nazri Mustafa, Azeman Musa, Hamidon Senawi, Yusof Wan Omar, Wan Zaidi Abdul Majid, Kamsani Mohamad Shaiful Ashrul, Ishak TJ Mechanical engineering and machinery A liquid fuel burner system with curved radial air swirler vane angles with swirl number (SN) variation between 0.046 to 1.911 has been investigated. A combustor with single central fuel nozzle is used to determine the effect of swirl number in emissions formation especially NOX and other emissions such as CO, UHc and CO2. Swirling flow affect the recirculation zone provides the aerodynamics blockage to stabilise the flame, improved mixing between air and fuel and formation of emissions. NOX reduction of more than 26% was obtained for the swirl number of 1.427 compared to 0.046. In order to achieve enhanced recirculation zone and better control of mixing process, a swirler consisting of an orifice plate at the outlet of radial swirler was introduced. The purpose of orifice plate insertion was to create the swirler pressure loss at the swirler outlet so that the swirler outlet shear layer turbulence was maximized to assist in mixing of air and fuel. This technique showed reduction of about 22% of NOX emissions were obtained compared to non-orifice assistance. Faculty of Mechanical Engineering 2005-05-26 Monograph NonPeerReviewed application/pdf en http://eprints.utm.my/id/eprint/591/1/74088.pdf Mohd. Jaafar, Mohammad Nazri and Mustafa, Azeman and Musa, Hamidon and Senawi, Yusof and Wan Omar, Wan Zaidi and Abdul Majid, Kamsani and Mohamad Shaiful Ashrul, Ishak (2005) Pembangunan teknik kawalan pencemaran menggunakan pembakar berbahan api cecair dengan aliran berpusar. Project Report. Faculty of Mechanical Engineering, Skudai, Johor. (Unpublished) https://www.academia.edu/21299894/Pembangunan_teknik_kawalan_pencemaran_menggunakan_pembakar_berbahan_api_cecair_dengan_aliran_berpusar
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/
language English
topic TJ Mechanical engineering and machinery
spellingShingle TJ Mechanical engineering and machinery
Mohd. Jaafar, Mohammad Nazri
Mustafa, Azeman
Musa, Hamidon
Senawi, Yusof
Wan Omar, Wan Zaidi
Abdul Majid, Kamsani
Mohamad Shaiful Ashrul, Ishak
Pembangunan teknik kawalan pencemaran menggunakan pembakar berbahan api cecair dengan aliran berpusar
description A liquid fuel burner system with curved radial air swirler vane angles with swirl number (SN) variation between 0.046 to 1.911 has been investigated. A combustor with single central fuel nozzle is used to determine the effect of swirl number in emissions formation especially NOX and other emissions such as CO, UHc and CO2. Swirling flow affect the recirculation zone provides the aerodynamics blockage to stabilise the flame, improved mixing between air and fuel and formation of emissions. NOX reduction of more than 26% was obtained for the swirl number of 1.427 compared to 0.046. In order to achieve enhanced recirculation zone and better control of mixing process, a swirler consisting of an orifice plate at the outlet of radial swirler was introduced. The purpose of orifice plate insertion was to create the swirler pressure loss at the swirler outlet so that the swirler outlet shear layer turbulence was maximized to assist in mixing of air and fuel. This technique showed reduction of about 22% of NOX emissions were obtained compared to non-orifice assistance.
format Monograph
author Mohd. Jaafar, Mohammad Nazri
Mustafa, Azeman
Musa, Hamidon
Senawi, Yusof
Wan Omar, Wan Zaidi
Abdul Majid, Kamsani
Mohamad Shaiful Ashrul, Ishak
author_facet Mohd. Jaafar, Mohammad Nazri
Mustafa, Azeman
Musa, Hamidon
Senawi, Yusof
Wan Omar, Wan Zaidi
Abdul Majid, Kamsani
Mohamad Shaiful Ashrul, Ishak
author_sort Mohd. Jaafar, Mohammad Nazri
title Pembangunan teknik kawalan pencemaran menggunakan pembakar berbahan api cecair dengan aliran berpusar
title_short Pembangunan teknik kawalan pencemaran menggunakan pembakar berbahan api cecair dengan aliran berpusar
title_full Pembangunan teknik kawalan pencemaran menggunakan pembakar berbahan api cecair dengan aliran berpusar
title_fullStr Pembangunan teknik kawalan pencemaran menggunakan pembakar berbahan api cecair dengan aliran berpusar
title_full_unstemmed Pembangunan teknik kawalan pencemaran menggunakan pembakar berbahan api cecair dengan aliran berpusar
title_sort pembangunan teknik kawalan pencemaran menggunakan pembakar berbahan api cecair dengan aliran berpusar
publisher Faculty of Mechanical Engineering
publishDate 2005
url http://eprints.utm.my/id/eprint/591/1/74088.pdf
http://eprints.utm.my/id/eprint/591/
https://www.academia.edu/21299894/Pembangunan_teknik_kawalan_pencemaran_menggunakan_pembakar_berbahan_api_cecair_dengan_aliran_berpusar
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