CFD Investigation of Pollutant Emission in Can-Type Combustor Firing Natural Gas, LNG and Syngas
Carbon dioxide; Combustion; Combustors; Gas turbines; Gases; Liquefied natural gas; Natural gas; Pollution; Synthesis gas; Thermoelectric power plants; Appropriate models; Combustion pro-cess; Numerical calculation; Pollutant emission; Pollutant species; Reduction of co; Syngas combustion; Thermal p...
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2023
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my.uniten.dspace-227452023-05-29T14:11:59Z CFD Investigation of Pollutant Emission in Can-Type Combustor Firing Natural Gas, LNG and Syngas Hasini H. Fadhil S.S.A. Mat Zian N. Om N. 6507435998 55812738800 57189249899 42162023000 Carbon dioxide; Combustion; Combustors; Gas turbines; Gases; Liquefied natural gas; Natural gas; Pollution; Synthesis gas; Thermoelectric power plants; Appropriate models; Combustion pro-cess; Numerical calculation; Pollutant emission; Pollutant species; Reduction of co; Syngas combustion; Thermal power plants; Computational fluid dynamics; carbon dioxide; chemical composition; chemical pollutant; combustion; computational fluid dynamics; concentration (composition); emission; liquefied natural gas; machinery; nitrogen oxides; numerical method; power plant; prediction; software; turbine CFD investigation of flow, combustion process and pollutant emission using natural gas, liquefied natural gas and syngas of different composition is carried out. The combustor is a can-type combustor commonly used in thermal power plant gas turbine. The investigation emphasis on the comparison of pollutant emission such in particular CO2, and NOx between different fuels. The numerical calculation for basic flow and combustion process is done using the framework of ANSYS Fluent with appropriate model assumptions. Prediction of pollutant species concentration at combustor exit shows significant reduction of CO2 and NOx for syngas combustion compared to conventional natural gas and LNG combustion. Final 2023-05-29T06:11:59Z 2023-05-29T06:11:59Z 2016 Conference Paper 10.1088/1755-1315/32/1/012073 2-s2.0-84966691956 https://www.scopus.com/inward/record.uri?eid=2-s2.0-84966691956&doi=10.1088%2f1755-1315%2f32%2f1%2f012073&partnerID=40&md5=63ec311696e834de0d862e23a6555c61 https://irepository.uniten.edu.my/handle/123456789/22745 32 1 12073 All Open Access, Gold Institute of Physics Publishing Scopus |
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Carbon dioxide; Combustion; Combustors; Gas turbines; Gases; Liquefied natural gas; Natural gas; Pollution; Synthesis gas; Thermoelectric power plants; Appropriate models; Combustion pro-cess; Numerical calculation; Pollutant emission; Pollutant species; Reduction of co; Syngas combustion; Thermal power plants; Computational fluid dynamics; carbon dioxide; chemical composition; chemical pollutant; combustion; computational fluid dynamics; concentration (composition); emission; liquefied natural gas; machinery; nitrogen oxides; numerical method; power plant; prediction; software; turbine |
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6507435998 |
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6507435998 Hasini H. Fadhil S.S.A. Mat Zian N. Om N. |
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Conference Paper |
author |
Hasini H. Fadhil S.S.A. Mat Zian N. Om N. |
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Hasini H. Fadhil S.S.A. Mat Zian N. Om N. CFD Investigation of Pollutant Emission in Can-Type Combustor Firing Natural Gas, LNG and Syngas |
author_sort |
Hasini H. |
title |
CFD Investigation of Pollutant Emission in Can-Type Combustor Firing Natural Gas, LNG and Syngas |
title_short |
CFD Investigation of Pollutant Emission in Can-Type Combustor Firing Natural Gas, LNG and Syngas |
title_full |
CFD Investigation of Pollutant Emission in Can-Type Combustor Firing Natural Gas, LNG and Syngas |
title_fullStr |
CFD Investigation of Pollutant Emission in Can-Type Combustor Firing Natural Gas, LNG and Syngas |
title_full_unstemmed |
CFD Investigation of Pollutant Emission in Can-Type Combustor Firing Natural Gas, LNG and Syngas |
title_sort |
cfd investigation of pollutant emission in can-type combustor firing natural gas, lng and syngas |
publisher |
Institute of Physics Publishing |
publishDate |
2023 |
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1806425630773870592 |
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13.209306 |