AbstractThe integration feasibility of the stack in a portable power module is demonstrated by the conceptual design of the system. An energy balance is simulated with Matlab Simulink®. The operation modes of the system, efficiency and convection inside the stack are studied via the Simulink® simulation. Also an electrical simulation is done for the complete cell characterization. A modular 3D design of the stack is also drawn using Solid Works®. The model will be validated with the fabrication of an experimental microtubular cell stack. An experimental 2cell-stack has been built and tested with a total power of 0.9W
AbstractThe aim of this study was to improve design of microtubular Solid Oxide Fuel Cell (mSOFC) st...
Fuel cells are devices that convert chemical energy in hydrogen enriched fuels into electricity elec...
In this work, a novel micro-scale system based on solid oxide fuel cells (SOFCs) is studied for oper...
AbstractThe integration feasibility of the stack in a portable power module is demonstrated by the c...
Trabajo presentado al 10th European Solid Oxide Fuell Cell Forum celebrado en Lucerna (Suiza) del 26...
This PhD deals with the development of Microtubular Solid Oxide Fuel Cells (µT-SOFC) at the cell and...
Microtubular solid oxide fuel cells (MT-SOFCs) are interesting for portable and auxiliary power unit...
Microtubular solid oxide fuel cells (MT-SOFCs) are interesting for portable and auxiliary power unit...
Microtubular solid oxide fuel cells (MT-SOFCs) are interesting for portable and auxiliary power unit...
Microtubular solid oxide fuel cells (MT-SOFCs) are interesting for portable and auxiliary power unit...
A micro-tubular solid oxide fuel cell stack model including an integrated cooling system was develop...
Trabajo presentado al 19th World Hydrogen Energy Conference celebrado en Toronto (Canada) del 3 al 7...
Fuel cells are devices that convert chemical energy in hydrogen enriched fuels into electricity elec...
Fuel cells are devices that convert chemical energy in hydrogen enriched fuels into electricity elec...
Fuel cells are devices that convert chemical energy in hydrogen enriched fuels into electricity elec...
AbstractThe aim of this study was to improve design of microtubular Solid Oxide Fuel Cell (mSOFC) st...
Fuel cells are devices that convert chemical energy in hydrogen enriched fuels into electricity elec...
In this work, a novel micro-scale system based on solid oxide fuel cells (SOFCs) is studied for oper...
AbstractThe integration feasibility of the stack in a portable power module is demonstrated by the c...
Trabajo presentado al 10th European Solid Oxide Fuell Cell Forum celebrado en Lucerna (Suiza) del 26...
This PhD deals with the development of Microtubular Solid Oxide Fuel Cells (µT-SOFC) at the cell and...
Microtubular solid oxide fuel cells (MT-SOFCs) are interesting for portable and auxiliary power unit...
Microtubular solid oxide fuel cells (MT-SOFCs) are interesting for portable and auxiliary power unit...
Microtubular solid oxide fuel cells (MT-SOFCs) are interesting for portable and auxiliary power unit...
Microtubular solid oxide fuel cells (MT-SOFCs) are interesting for portable and auxiliary power unit...
A micro-tubular solid oxide fuel cell stack model including an integrated cooling system was develop...
Trabajo presentado al 19th World Hydrogen Energy Conference celebrado en Toronto (Canada) del 3 al 7...
Fuel cells are devices that convert chemical energy in hydrogen enriched fuels into electricity elec...
Fuel cells are devices that convert chemical energy in hydrogen enriched fuels into electricity elec...
Fuel cells are devices that convert chemical energy in hydrogen enriched fuels into electricity elec...
AbstractThe aim of this study was to improve design of microtubular Solid Oxide Fuel Cell (mSOFC) st...
Fuel cells are devices that convert chemical energy in hydrogen enriched fuels into electricity elec...
In this work, a novel micro-scale system based on solid oxide fuel cells (SOFCs) is studied for oper...