In this study, non-premixed combustion of a traditional fuel-natural gas, and an alternative fuel-biogas, is simulated in a swirling flow industrial gas turbine combustor geometry which includes the combustor liner and the outside casing in order to replicate the flow and combustion in a real gas turbine combustor. The 3D combustion simulations are validated and the results for combustion of both gases are analyzed to compare and evaluate the viability of biogas as an alternative fuel for use in industrial gas turbine combustors. The combustion performance is evaluated based on multiple combustion performance optimization parameters, namely, the combustion efficiency, pattern factor, and pollutant emissions (CO and NO). The effects of two d...
AbstractDesigned to operate with natural gas, the MGT are devices technologically recent with a noti...
Biogas derived from organic waste materials is a promising alternative and renewable gaseous fuel fo...
While dual fuel firing of power generation combustion systems can improve the fuel flexibility of su...
Combustion of biogas in gas turbines is an interesting option for provision of renewable combined he...
Industrial gas turbines are primarily fueled with natural gas. However, changes in fuel cost and ava...
There is a perceived need for multi-fuel burner geometries capable of operating with variable compos...
In the present work, numerical investigations are performed to study the combustion characteristics ...
Utilization of biogas can provide a source of renewable energy in both heat and power generation. Co...
In recent years domestic natural gas has experienced a considerable growth in demand particularly in...
This work examined the performance of swirl burners using different injection strategies for various...
This study compares the performance of a thermal power plant fired by natural gas to that fired by b...
Alternative fuels are found to be the most promising solution to the problem of conventional IC engi...
Biogas is a renewable energy and consists of up to 50% methane (CH4) as a flammable gas (pure flamma...
The major aim of the research is to investigate the ability of biogas as an alternative fuel for gas...
Multiphase fuel combustion was carried out in a swirl-stabilised combustor with the aim of expanding...
AbstractDesigned to operate with natural gas, the MGT are devices technologically recent with a noti...
Biogas derived from organic waste materials is a promising alternative and renewable gaseous fuel fo...
While dual fuel firing of power generation combustion systems can improve the fuel flexibility of su...
Combustion of biogas in gas turbines is an interesting option for provision of renewable combined he...
Industrial gas turbines are primarily fueled with natural gas. However, changes in fuel cost and ava...
There is a perceived need for multi-fuel burner geometries capable of operating with variable compos...
In the present work, numerical investigations are performed to study the combustion characteristics ...
Utilization of biogas can provide a source of renewable energy in both heat and power generation. Co...
In recent years domestic natural gas has experienced a considerable growth in demand particularly in...
This work examined the performance of swirl burners using different injection strategies for various...
This study compares the performance of a thermal power plant fired by natural gas to that fired by b...
Alternative fuels are found to be the most promising solution to the problem of conventional IC engi...
Biogas is a renewable energy and consists of up to 50% methane (CH4) as a flammable gas (pure flamma...
The major aim of the research is to investigate the ability of biogas as an alternative fuel for gas...
Multiphase fuel combustion was carried out in a swirl-stabilised combustor with the aim of expanding...
AbstractDesigned to operate with natural gas, the MGT are devices technologically recent with a noti...
Biogas derived from organic waste materials is a promising alternative and renewable gaseous fuel fo...
While dual fuel firing of power generation combustion systems can improve the fuel flexibility of su...