A dynamic model of a 100 MW solid oxide fuel cell-gas turbine hybrid system has been developed and subjected to perturbations in diurnal ambient temperature and pressure as well as load sheds. The dynamic system responses monitored were the fuel cell electrolyte temperature, gas turbine shaft speed, turbine inlet temperature, and compressor surge. Using a control strategy that primarily focuses on holding fuel cell electrolyte temperature constant and secondarily on maintaining gas turbine shaft speed, safe operation was found to occur for expected ambient pressure variation ranges and for ambient temperature variations up to 28 K when tested nonsimultaneously. When ambient temperature and pressure were varied simultaneously, stable operati...
Gas turbine technology for aerospace applications are approaching limits in efficiency gains as incr...
International audienceThe effect of cathode airflow variation on the dynamics of a fuel cell gas tur...
This research presents a system design and analysis, and transient \textit{control} and optimization...
A dynamic model of a 100 MW solid oxide fuel cell-gas turbine hybrid system has been developed and s...
A dynamic model of a 100 MW solid oxide fuel cell-gas turbine (SOFC-GT) hybrid system has been devel...
Hybrid fuel cell gas turbine sensitivity to ambient perturbations is analyzed using experimental and...
In this publication we focus on the three main aspects of our research. On the experimental side res...
This study is focused on a hybrid fuel cell/gas turbine (FC/GT) system with an atmospheric pressure ...
Fuel cell gas turbine hybrid systems have achieved ultra-high efficiency and ultra-low emissions at ...
Temperature limitations of Solid Oxide Fuel Cells (SOFC) in transient single operation and steady-st...
ABSTRACT Temperature limitations of Solid Oxide Fuel Cells (SOFC) in transient single operation and ...
There is extensive research taking place involving fuel cell - gas turbine combined power plantsyste...
A bottoming 275 kilowatt planar solid oxide fuel cell (SOFC) gas turbine (GT) hybrid system control ...
The effect of cathode airflow variation on the dynamics of a fuel cell gas turbine hybrid system was...
Future pressurized Solid Oxide Fuel Cell- (SOFC) Gas Turbine Hybrid Systems (HS) promise high effici...
Gas turbine technology for aerospace applications are approaching limits in efficiency gains as incr...
International audienceThe effect of cathode airflow variation on the dynamics of a fuel cell gas tur...
This research presents a system design and analysis, and transient \textit{control} and optimization...
A dynamic model of a 100 MW solid oxide fuel cell-gas turbine hybrid system has been developed and s...
A dynamic model of a 100 MW solid oxide fuel cell-gas turbine (SOFC-GT) hybrid system has been devel...
Hybrid fuel cell gas turbine sensitivity to ambient perturbations is analyzed using experimental and...
In this publication we focus on the three main aspects of our research. On the experimental side res...
This study is focused on a hybrid fuel cell/gas turbine (FC/GT) system with an atmospheric pressure ...
Fuel cell gas turbine hybrid systems have achieved ultra-high efficiency and ultra-low emissions at ...
Temperature limitations of Solid Oxide Fuel Cells (SOFC) in transient single operation and steady-st...
ABSTRACT Temperature limitations of Solid Oxide Fuel Cells (SOFC) in transient single operation and ...
There is extensive research taking place involving fuel cell - gas turbine combined power plantsyste...
A bottoming 275 kilowatt planar solid oxide fuel cell (SOFC) gas turbine (GT) hybrid system control ...
The effect of cathode airflow variation on the dynamics of a fuel cell gas turbine hybrid system was...
Future pressurized Solid Oxide Fuel Cell- (SOFC) Gas Turbine Hybrid Systems (HS) promise high effici...
Gas turbine technology for aerospace applications are approaching limits in efficiency gains as incr...
International audienceThe effect of cathode airflow variation on the dynamics of a fuel cell gas tur...
This research presents a system design and analysis, and transient \textit{control} and optimization...