Martin Andersson
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- 2018
- Simple and complex polymer electrolyte fuel cell stack models : A comparison (
- Modeling of solid oxide fuel cells with optimized interconnect designs (
- Effect of the electrochemical active site on thermal stress in solid oxide fuel cells (
- Interface resolving two-phase flow simulations in gas channels relevant for polymer electrolyte fuel cells using the volume of fluid approach (
- A suitable width-size of a channel flow for obtaining the velocity profiles by using the Lattice Boltzmann method (
- Modeling and synchrotron imaging of droplet detachment in gas channels of polymer electrolyte fuel cells (
- Stability Issues of Fuel Cell Models in the Activation and Concentration Regimes (
- Mechanism of chromium poisoning the conventional cathode material for solid oxide fuel cells (
- Coupling of lattice boltzmann and volume of fluid approaches to study the droplet behavior at the gas diffusion layer/gas channel interface (
- Thermal stress analysis of sulfur deactivated solid oxide fuel cells (
- 2017
- Modeling of a Gradient Porosity SOFC Anode using the Lattice Boltzmann Method (
- Predicting transport parameters in PEFC gas diffusion layers considering micro-architectural variations using the Lattice Boltzmann method (
- Thermal stress analysis of a planar anode-supported solid oxide fuel cell : Effects of anode porosity (
- Wavy Surface Cathode Gas Flow Channel Effects on Transport Processes in a Proton Exchange Membrane Fuel Cell (
- Influence of anisotropic gas diffusion layers on transport phenomena in a proton exchange membrane fuel cell (
- Comparing through-plane diffusibility correlations in PEFC gas diffusion layers using the lattice Boltzmann method (
- Computational time and domain size analysis of porous media flows using the lattice Boltzmann method (
- Enhancement of heat transfer in a square channel by roughened surfaces in rib-elements and turbulent flow manipulation (
- Pore-scale analysis of diffusion transport parameters in digitally reconstructed SOFC anodes with gradient porosity in the main flow direction (
- Co-fabrication of nickel-YSZ cermet nanofibers via an electrospinning technique (