Study on atomization characteristics for power generation application

The world is dependent on two common basic needs which is electricity and water supply. Thus, power generation is the pulse of a country's econmony. However, most of today's power is generated from fossil fuel which is non sustainable. This research aims to study the feasibility of biodies...

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Main Authors: Anwar Z.M., Tan E.S., Adnan R., Idris M.A.
Other Authors: 57207504636
Format: Conference paper
Published: Institute of Physics Publishing 2023
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spelling my.uniten.dspace-293872023-12-28T12:12:50Z Study on atomization characteristics for power generation application Anwar Z.M. Tan E.S. Adnan R. Idris M.A. 57207504636 16425096800 55310890400 55812587300 Biodiesel Blending Chemical properties Diesel fuels Electric power generation Fuels Gas turbines Water supply Atomization characteristics Gas turbine applications Gas turbine fuels General equations Power generation applications Sauter mean diameter (SMD) Spray tip penetration Standard requirements basic needs biofuel chemical property conference proceeding feasibility study fossil fuel power generation software sustainability theoretical study turbine Combustion The world is dependent on two common basic needs which is electricity and water supply. Thus, power generation is the pulse of a country's econmony. However, most of today's power is generated from fossil fuel which is non sustainable. This research aims to study the feasibility of biodiesel to substitute diesel fuel for gas turbine application. The objective is to investigate the atomization characteristics using various blend of biodiesel derived from transesterification of palm oil. There are five types of fuels tested which are pure Diesel, B20, B50, B80 and B100 which were experimentally tested in a spray atomizer to evaluate the relationship of the of the fuel blend ratio with atomization characteristics such as spray cone angle, spray tip penetration and Sauter Mean Diameter. Besides that, fuel chemical properties testing were conducted to ensure the fuel chemical properties for tested fuel meet the standard requirements for gas turbine fuel oil. Result shows that the higher blend of biodiesel will give larger SMD, longer spray tip penetration, and a smaller spray cone angle. The SMD was calculated based on a general equation. Meanwhile, spray angle and spray tip was obtained from photos captured and anlayzed using software. � Published under licence by IOP Publishing Ltd. Final 2023-12-28T04:12:50Z 2023-12-28T04:12:50Z 2013 Conference paper 10.1088/1755-1315/16/1/012016 2-s2.0-84881117815 https://www.scopus.com/inward/record.uri?eid=2-s2.0-84881117815&doi=10.1088%2f1755-1315%2f16%2f1%2f012016&partnerID=40&md5=27889165c522774df754ac015b2b96c7 https://irepository.uniten.edu.my/handle/123456789/29387 16 1 12016 All Open Access; Gold Open Access Institute of Physics Publishing Scopus
institution Universiti Tenaga Nasional
building UNITEN Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
url_provider http://dspace.uniten.edu.my/
topic Biodiesel
Blending
Chemical properties
Diesel fuels
Electric power generation
Fuels
Gas turbines
Water supply
Atomization characteristics
Gas turbine applications
Gas turbine fuels
General equations
Power generation applications
Sauter mean diameter (SMD)
Spray tip penetration
Standard requirements
basic needs
biofuel
chemical property
conference proceeding
feasibility study
fossil fuel
power generation
software
sustainability
theoretical study
turbine
Combustion
spellingShingle Biodiesel
Blending
Chemical properties
Diesel fuels
Electric power generation
Fuels
Gas turbines
Water supply
Atomization characteristics
Gas turbine applications
Gas turbine fuels
General equations
Power generation applications
Sauter mean diameter (SMD)
Spray tip penetration
Standard requirements
basic needs
biofuel
chemical property
conference proceeding
feasibility study
fossil fuel
power generation
software
sustainability
theoretical study
turbine
Combustion
Anwar Z.M.
Tan E.S.
Adnan R.
Idris M.A.
Study on atomization characteristics for power generation application
description The world is dependent on two common basic needs which is electricity and water supply. Thus, power generation is the pulse of a country's econmony. However, most of today's power is generated from fossil fuel which is non sustainable. This research aims to study the feasibility of biodiesel to substitute diesel fuel for gas turbine application. The objective is to investigate the atomization characteristics using various blend of biodiesel derived from transesterification of palm oil. There are five types of fuels tested which are pure Diesel, B20, B50, B80 and B100 which were experimentally tested in a spray atomizer to evaluate the relationship of the of the fuel blend ratio with atomization characteristics such as spray cone angle, spray tip penetration and Sauter Mean Diameter. Besides that, fuel chemical properties testing were conducted to ensure the fuel chemical properties for tested fuel meet the standard requirements for gas turbine fuel oil. Result shows that the higher blend of biodiesel will give larger SMD, longer spray tip penetration, and a smaller spray cone angle. The SMD was calculated based on a general equation. Meanwhile, spray angle and spray tip was obtained from photos captured and anlayzed using software. � Published under licence by IOP Publishing Ltd.
author2 57207504636
author_facet 57207504636
Anwar Z.M.
Tan E.S.
Adnan R.
Idris M.A.
format Conference paper
author Anwar Z.M.
Tan E.S.
Adnan R.
Idris M.A.
author_sort Anwar Z.M.
title Study on atomization characteristics for power generation application
title_short Study on atomization characteristics for power generation application
title_full Study on atomization characteristics for power generation application
title_fullStr Study on atomization characteristics for power generation application
title_full_unstemmed Study on atomization characteristics for power generation application
title_sort study on atomization characteristics for power generation application
publisher Institute of Physics Publishing
publishDate 2023
_version_ 1806423303251820544
score 13.214268