The exploitation of an SOFC-system model to define and test control and energy management strategies is presented. Such a work is motivated by the increasing interest paid to SOFC technology by industries and governments due to its highly appealing potentialities in terms of energy savings, fuel flexibility, cogeneration, low-pollution and low-noise operation. The core part of the model is the SOFC stack, surrounded by a number of auxiliary devices, i.e. air compressor, regulating pressure valves, heat exchangers, pre-reformer and post-burner. Due to the slow thermal dynamics of SOFCs, a set of three lumped-capacity models describes the dynamic response of fuel cell and heat exchangers to any operation change. The dynamic model was used t...
A two-dimensional dynamic model was created for a Siemens Westinghouse type tubular solid oxide fuel...
The paper presents a lumped zero dimensional (0D) model for the simulation of solid oxide fuel cell ...
Because of the high complexity of Solid Oxide Fuel Cell hybrid systems, a transient analysis is mand...
The exploitation of an SOFC-system model to define and test control and energy management strategies...
Solid oxide fuel cells (SOFCs) are considered a promising technology to be adopted as future possibl...
A novel SOFC system control strategy has been developed for rapid load following. The strategy was m...
Most of the world's energy generation is based on fossil fuels such as coal and oil, which already t...
The constant pressure on the maritime sector to reduce Greenhouse Gas (GHG) emissions has led the sh...
This book presents methodologies suitable for the optimal design of control and diagnosis strategies...
This dissertation addresses the modeling and control of planar Solid Oxide Fuel Cell (SOFC) power sy...
Solid oxide fuel cell (SOFC) systems are especially advantageous for a highly efficient and lowemiss...
Solid oxide cell systems (SOCs) are increasingly being considered for electrical energy storage and ...
Solid Oxide Fuel Cell (SOFC) technology is of high interest for stationary decentralized generation ...
Ever-increasing energy consumption, raising public awareness for environmental protection, and highe...
A two-dimensional dynamic model was created for a Siemens Westinghouse type tubular solid oxide fuel...
The paper presents a lumped zero dimensional (0D) model for the simulation of solid oxide fuel cell ...
Because of the high complexity of Solid Oxide Fuel Cell hybrid systems, a transient analysis is mand...
The exploitation of an SOFC-system model to define and test control and energy management strategies...
Solid oxide fuel cells (SOFCs) are considered a promising technology to be adopted as future possibl...
A novel SOFC system control strategy has been developed for rapid load following. The strategy was m...
Most of the world's energy generation is based on fossil fuels such as coal and oil, which already t...
The constant pressure on the maritime sector to reduce Greenhouse Gas (GHG) emissions has led the sh...
This book presents methodologies suitable for the optimal design of control and diagnosis strategies...
This dissertation addresses the modeling and control of planar Solid Oxide Fuel Cell (SOFC) power sy...
Solid oxide fuel cell (SOFC) systems are especially advantageous for a highly efficient and lowemiss...
Solid oxide cell systems (SOCs) are increasingly being considered for electrical energy storage and ...
Solid Oxide Fuel Cell (SOFC) technology is of high interest for stationary decentralized generation ...
Ever-increasing energy consumption, raising public awareness for environmental protection, and highe...
A two-dimensional dynamic model was created for a Siemens Westinghouse type tubular solid oxide fuel...
The paper presents a lumped zero dimensional (0D) model for the simulation of solid oxide fuel cell ...
Because of the high complexity of Solid Oxide Fuel Cell hybrid systems, a transient analysis is mand...