The influence of various preheating and direction of magnetic field on combustion characteristics of palm oil droplets for boiler combustion in power generation system

Research has been carried out on the effect of various preheating and the direction of the magnetic field on the flame characteristics of droplet combustion. This study is important to substitute fuel from fossils with vegetable oil that is environment friendly. The variations of the magnetic field...

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Published in:Eastern-European Journal of Enterprise Technologies
Main Authors: Dony Perdana, Mochammad Hatta, Mochammad Khoirul Rosidin, Muhamad Hanifudin
Format: Article in Journal/Newspaper
Language:English
Published: Zenodo 2022
Subjects:
Online Access:https://doi.org/10.15587/1729-4061.2022.267282
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author Dony Perdana
Mochammad Hatta
Mochammad Khoirul Rosidin
Muhamad Hanifudin
author_facet Dony Perdana
Mochammad Hatta
Mochammad Khoirul Rosidin
Muhamad Hanifudin
author_sort Dony Perdana
collection Zenodo
container_issue 8 (120)
container_start_page 73
container_title Eastern-European Journal of Enterprise Technologies
container_volume 6
description Research has been carried out on the effect of various preheating and the direction of the magnetic field on the flame characteristics of droplet combustion. This study is important to substitute fuel from fossils with vegetable oil that is environment friendly. The variations of the magnetic field are south-south pole, north-north pole, south-north pole, north-south pole, and without. A drop of palm oil is placed on a type K thermocouple between two magnetic rods. The high-speed camera of 120fps from the front recorded the flame from the start until it went out. The researcher found out the influence of various preheating in palm oil and the magnetic characteristics and behavior of the flame. The direction of the north-south magnetic field had a higher magnetic field strength, caused the droplet combustion to increases resulting in a wider flame but a lower and more stable height compared to other magnetic field directions. The speed of combustion affected by the magnetic field intensity which resulted the flow rate of O 2 , therefore the combustion speed happened quickly because between O 2 and the fuel molecules easily react and were more flammable. The strength of the magnetic field increased oxygen concentration and fuel molecule around the reaction zone causing a short burning, resulting in a change delay time the shorter but the flame temperature increased. Stability, shape, temperature, height, delay time and combustion duration were highly valuable to design an efficient heat generator industry with the addition of magnet field. This study provides insight into the influence of magnetic field direction in magnetic field intensity on droplet combustion characteristics for boiler combustion in the power generation system
format Article in Journal/Newspaper
genre North Pole
South pole
genre_facet North Pole
South pole
geographic North Pole
South Pole
geographic_facet North Pole
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op_doi https://doi.org/10.15587/1729-4061.2022.267282
op_relation oai:zenodo.org:7523030
op_rights info:eu-repo/semantics/openAccess
Creative Commons Attribution 4.0 International
https://creativecommons.org/licenses/by/4.0/legalcode
op_source Eastern-European Journal of Enterprise Technologies, 6(8 (120)), 73-83, (2022-12-30)
publishDate 2022
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spelling ftzenodo:oai:zenodo.org:7523030 2025-01-16T23:48:40+00:00 The influence of various preheating and direction of magnetic field on combustion characteristics of palm oil droplets for boiler combustion in power generation system Dony Perdana Mochammad Hatta Mochammad Khoirul Rosidin Muhamad Hanifudin 2022-12-30 https://doi.org/10.15587/1729-4061.2022.267282 eng eng Zenodo oai:zenodo.org:7523030 info:eu-repo/semantics/openAccess Creative Commons Attribution 4.0 International https://creativecommons.org/licenses/by/4.0/legalcode Eastern-European Journal of Enterprise Technologies, 6(8 (120)), 73-83, (2022-12-30) magnetic field palm oil droplet combustion flame characteristics flame stability info:eu-repo/semantics/article 2022 ftzenodo https://doi.org/10.15587/1729-4061.2022.267282 2024-12-06T16:22:51Z Research has been carried out on the effect of various preheating and the direction of the magnetic field on the flame characteristics of droplet combustion. This study is important to substitute fuel from fossils with vegetable oil that is environment friendly. The variations of the magnetic field are south-south pole, north-north pole, south-north pole, north-south pole, and without. A drop of palm oil is placed on a type K thermocouple between two magnetic rods. The high-speed camera of 120fps from the front recorded the flame from the start until it went out. The researcher found out the influence of various preheating in palm oil and the magnetic characteristics and behavior of the flame. The direction of the north-south magnetic field had a higher magnetic field strength, caused the droplet combustion to increases resulting in a wider flame but a lower and more stable height compared to other magnetic field directions. The speed of combustion affected by the magnetic field intensity which resulted the flow rate of O 2 , therefore the combustion speed happened quickly because between O 2 and the fuel molecules easily react and were more flammable. The strength of the magnetic field increased oxygen concentration and fuel molecule around the reaction zone causing a short burning, resulting in a change delay time the shorter but the flame temperature increased. Stability, shape, temperature, height, delay time and combustion duration were highly valuable to design an efficient heat generator industry with the addition of magnet field. This study provides insight into the influence of magnetic field direction in magnetic field intensity on droplet combustion characteristics for boiler combustion in the power generation system Article in Journal/Newspaper North Pole South pole Zenodo North Pole South Pole Eastern-European Journal of Enterprise Technologies 6 8 (120) 73 83
spellingShingle magnetic field
palm oil
droplet combustion
flame characteristics
flame stability
Dony Perdana
Mochammad Hatta
Mochammad Khoirul Rosidin
Muhamad Hanifudin
The influence of various preheating and direction of magnetic field on combustion characteristics of palm oil droplets for boiler combustion in power generation system
title The influence of various preheating and direction of magnetic field on combustion characteristics of palm oil droplets for boiler combustion in power generation system
title_full The influence of various preheating and direction of magnetic field on combustion characteristics of palm oil droplets for boiler combustion in power generation system
title_fullStr The influence of various preheating and direction of magnetic field on combustion characteristics of palm oil droplets for boiler combustion in power generation system
title_full_unstemmed The influence of various preheating and direction of magnetic field on combustion characteristics of palm oil droplets for boiler combustion in power generation system
title_short The influence of various preheating and direction of magnetic field on combustion characteristics of palm oil droplets for boiler combustion in power generation system
title_sort influence of various preheating and direction of magnetic field on combustion characteristics of palm oil droplets for boiler combustion in power generation system
topic magnetic field
palm oil
droplet combustion
flame characteristics
flame stability
topic_facet magnetic field
palm oil
droplet combustion
flame characteristics
flame stability
url https://doi.org/10.15587/1729-4061.2022.267282