Direct internal reforming enables optimal heat integration and reduced complexity in solid oxide fuel cell (SOFC)systems, but thermal stresses induced by the increased temperature gradients may inflict damage to the stack. Therefore, the development of adequate control strategies requires models that can accurately predict the temperature profiles in the stack. A 1D dynamic modelling platform is developed in this study, and used to simulate SOFCs in both single cell and stack configurations. The single cell model is used to validate power law and Hougen-Watson reforming kinetics derived from experiments in previous work. The stack model, based on the same type of cells, accounts for heat transfer in the inactive area and to the environment,...
SOFCs are often designed to operate with specific fuels, quite often natural gas. CFD modeling is of...
The Solid Oxide Fuel Cells (SOFCs) anode materials are catalytically active for Direct Internal Refo...
A distributed variable model for solid oxide fuel cell (SOFC), with internal fuel reforming on the a...
Direct internal reforming enables optimal heat integration and reduced complexity in solid oxide fue...
The SOFC is well-established as a high-efficiency energy conversion technology with demonstrations o...
Direct internal reformation of methane in solid oxide fuel cells (SOFCs) leads to two major performa...
A simplified quasi-3-dimensional model of a solid oxide fuel cell (SOFC) is developed to investigate...
This paper presents a detailed model to evaluate power density, species concentration, operating cur...
A distributed variable model for solid oxide fuel cell (SOFC), with internal fuel reforming on the a...
Fuel cells are promising for future energy systems, since they are energy efficient and, when hydrog...
Fuel flexibility is a significant advantage of solid oxide fuel cells (SOFCs) and can be attributed ...
SOFCs are often designed to operate with specific fuels, quite often natural gas. CFD modeling is of...
DoctorSolid oxide fuel cells (SOFCs) consist of ceramic materials. Because of the brittle nature of ...
Fuel cells are electrochemical devices that convert chemical energy into electricity. Solid oxide fu...
The Solid Oxide Fuel Cells (SOFCs) anode materials are catalytically active for Direct Internal Refo...
SOFCs are often designed to operate with specific fuels, quite often natural gas. CFD modeling is of...
The Solid Oxide Fuel Cells (SOFCs) anode materials are catalytically active for Direct Internal Refo...
A distributed variable model for solid oxide fuel cell (SOFC), with internal fuel reforming on the a...
Direct internal reforming enables optimal heat integration and reduced complexity in solid oxide fue...
The SOFC is well-established as a high-efficiency energy conversion technology with demonstrations o...
Direct internal reformation of methane in solid oxide fuel cells (SOFCs) leads to two major performa...
A simplified quasi-3-dimensional model of a solid oxide fuel cell (SOFC) is developed to investigate...
This paper presents a detailed model to evaluate power density, species concentration, operating cur...
A distributed variable model for solid oxide fuel cell (SOFC), with internal fuel reforming on the a...
Fuel cells are promising for future energy systems, since they are energy efficient and, when hydrog...
Fuel flexibility is a significant advantage of solid oxide fuel cells (SOFCs) and can be attributed ...
SOFCs are often designed to operate with specific fuels, quite often natural gas. CFD modeling is of...
DoctorSolid oxide fuel cells (SOFCs) consist of ceramic materials. Because of the brittle nature of ...
Fuel cells are electrochemical devices that convert chemical energy into electricity. Solid oxide fu...
The Solid Oxide Fuel Cells (SOFCs) anode materials are catalytically active for Direct Internal Refo...
SOFCs are often designed to operate with specific fuels, quite often natural gas. CFD modeling is of...
The Solid Oxide Fuel Cells (SOFCs) anode materials are catalytically active for Direct Internal Refo...
A distributed variable model for solid oxide fuel cell (SOFC), with internal fuel reforming on the a...