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 (
- Interface resolving two-phase flow simulations in gas channels relevant for polymer electrolyte fuel cells using the volume of fluid approach (
- Effect of the electrochemical active site on thermal stress in solid oxide fuel cells (
- Mechanism of chromium poisoning the conventional cathode material for solid oxide fuel cells (
- Stability Issues of Fuel Cell Models in the Activation and Concentration Regimes (
- Modeling and synchrotron imaging of droplet detachment in gas channels of polymer electrolyte fuel cells (
- Coupling of lattice boltzmann and volume of fluid approaches to study the droplet behavior at the gas diffusion layer/gas channel interface (
- A suitable width-size of a channel flow for obtaining the velocity profiles by using the Lattice Boltzmann method (
- Thermal stress analysis of sulfur deactivated solid oxide fuel cells (
- 2017
- Predicting transport parameters in PEFC gas diffusion layers considering micro-architectural variations using the Lattice Boltzmann method (
- Modeling of a Gradient Porosity SOFC Anode using the Lattice Boltzmann Method (
- Influence of anisotropic gas diffusion layers on transport phenomena in a proton exchange membrane fuel cell (
- Thermal stress analysis of a planar anode-supported solid oxide fuel cell : Effects of anode porosity (
- Comparing through-plane diffusibility correlations in PEFC gas diffusion layers using the lattice Boltzmann method (
- Wavy Surface Cathode Gas Flow Channel Effects on Transport Processes in a Proton Exchange Membrane Fuel Cell (
- 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 (
- Co-fabrication of nickel-YSZ cermet nanofibers via an electrospinning technique (
- Fabrication of Nickel-YSZ cermet nanofibers via electrospinning (
- Applicability of the lattice Boltzmann method to determine the ohmic resistance in equivalent resistor connections (
- Pore-scale analysis of diffusion transport parameters in digitally reconstructed SOFC anodes with gradient porosity in the main flow direction (
- 2016
- Incidence of the particle size over the tortuosity in a porous medium using the lattice Boltzmann method (
- Investigation of heat transfer and fluid flow over pocket cavity in the rear part of gas turbine (
- Modeling of an anode supported Solid Oxide Fuel Cell focusing on Thermal Stresses (
- Potential of Lattice Boltzmann method to determine the ohmic resistance in porous materials (
- Impact on Diffusion Parameters Computation in Gas Diffusion Layers, Considering the Land/Channel Region, Using the Lattice Boltzmann Method (
- Review on Dimensionless Numbers Relevant for Polymer Electrolyte Fuel Cells (
- Solid Oxide Fuel Cell Interconnect Design Optimization considering the Thermal Stresses (
- Modeling of mass and charge transport in a solid oxide fuel cell anode structure by a 3D lattice Boltzmann approach (
- A Review of Cell-Scale Multiphase Flow Modelling, including Water Management, in Polymer Electrolyte Fuel Cells (
- Konferensbevakning FCExpo 2016 (International Hydrogen and Fuel Cell Expo 2016) –2/3-4/3, Tokyo, Japan (
- Konferensbevakning European Fuel Cell Technology & Applications Piero Lunghi Conference - EFC15, 16e-18e December, Neapel, Italien (
- 2015
- Modeling of Solid Oxide Fuel Cell with Anisotropic Conductivity (
- Fluid Behavior Through a Simulated PEMFC Gas Diffusion Layer (
- Compress effects on porosity, gas-phase tortuosity, and gas permeability in a simulated PEM gas diffusion layer (
- Analysis of Porosity and Tortuosity in a 2D Selected Region of Solid Oxide Fuel Cell Cathode Using the Lattice Boltzmann Method (
- 2014
- Konferensbevakning SAE 2014 New Energy Vehicle Forum, 24e-25e September, Shanghai, Kina (
- SOFC Cell Design Optimization Using the Finite Element Method Based CFD Approach (
- Lattice Boltzmann Modeling From the Macro- to the Microscale - An Approximation to the Porous Media in Fuel Cells - (
- Konferensbevakning av konferensen Fuel Cell Seminar 2014 (
- Highlights of Fuel Cell Modeling From a Lattice Boltzmann Method Point of View (
- Evaluation of Tortuosity in High Porosity Media Using the Lattice Boltzmann Method (
- Solid Oxide Fuel Cell Material Structure Grading in the Direction Normal to the Electrode/Electrolyte Interface using COMSOL Multiphysics (
- Lattice Boltzmann Modeling of Advection-Diffusion Transport With Electrochemical Reactions in a Porous SOFC Anode Structure (
- SOFC Cathode Design Optimization using the Finite Element Method (
- 3D modeling of an anode supported SOFC using FEM and LBM (
- Comparison of Humidified Hydrogen and Partly Pre-Reformed Natural Gas as Fuel for Solid Oxide Fuel Cells applying Computational Fluid Dynamics (
- 2013
- Three dimensional modeling of an solid oxide fuel cell coupling charge transfer phenomena with transport processes and heat generation (
- Perspectives on Lattice Boltzmann Modeling of Transport Processes with Electrochemical Reactions in SOFCs (
- Kartläggning av svenska bränslecellsprojekt (
- SOFC modeling considering hydrogen and carbon monoxide as electrochemical reactants (
- Fuel Cell Seminar 2012 – konferensbevakning (
- Teknikbevakning av stationära fastoxidbränsleceller (SOFC) 2012 (
- Grading the amount of electrochemcial active sites along the main flow direction of an SOFC (
- Three-Dimensional Design Optimization Of An Anode-Supported SOFC Using FEM (
- Three Dimensional CFD Modeling and Experimental Validation of an Electrolyte Supported Solid Oxide Fuel Cell Fed with Methane-Free Biogas (
- Lattice Boltzmann Modeling of Advection-Diffusion Transport with Electrochemical Reactions (
- 2012
- SOFC Modeling at the Cell Scale including Hydorgen and Carbon Monoxide as Electrochemically Active Fuels (
- SOFC Modeling Considering Electrochemical Reactions at the Active Three Phase Boundaries (
- Transport phenomena in solid oxide fuel cell electrodes focusing on heat transfer related to chemical reactions (
- The effect of heat transfer on the polarizations within an intermediate temperature solid oxide fuel cell (
- SOFC modeling at the cell scale including hydrogen and carbon monoxide as electrochemically active fuels (
- 2011
- Solid Oxide Fuel Cell Modeling at the Cell Scale - Focusing on Species, Heat, Charge and Momentum Transport as well as the Reaction Kinetics and Effects (
- Comparative Analysis of Different Renewable Fuels for Potential Utilization in SOFCs (
- CFD Modeling: Different Kinetic Approaches for Internal Reforming Reactions in an Anode-Supported SOFC (
- Populärvetenskaplig beskrivning på svenska av avhandling (
- SOFC modeling considering electrochemical reactions at the TPBs (
- Modeling Validation and Simulation of an Anode Supported SOFC including Mass and Heat Transport, Fluid Flow and Chemical Reactions (
- Simulation of alternative fuels for potential utilization in solid oxide fuel cells (
- Review of Catalyst Materials and Catalytic Steam Reforming Reactions in SOFC Anodes (
- Modeling Analysis of Different Renewable Fuels in an Anode Supported SOFC (
- Analysis of Microscopic Anode Structure Effects on an Anode-Supported SOFC Including Knudsen Diffusion (
- The Kinetics Effect In SOFCs On Heat And Mass Transfer Limitations: Interparticle, Interphase And Intraparticle Transport (
- 2010
- Study On Catalytic Reactions In Solid Oxide Fuel Cells With Comparison To Gas Phase Reactions In Internal Combustion Engines (
- Comparative Analysis of Different Renewable Fuels for Potential Utilization in SOFCs (
- CFD Modeling Considering Different Kinetic Models for Internal Reforming Reactions in an Anode-Supported SOFC (
- Modeling Analysis of Different Renewable Fuels in an Anode Supported SOFC (
- Catalyst Materials and Catalytic Steam Reforming Reactions in SOFC Anodes (
- Review on Modeling Development for Multiscale Chemical Reactions Coupled Transport Phenomena in Solid Oxide Fuel Cells (
- 2009
- LTNE approach and simulation for anode-supported SOFCs (
- SOFC Modeling Considering Internal Reforming by a Global Kinetics Approach (
- SOFC Modeling Considering Mass and Heat Transfer, Fluid Flow with Internal Reforming Reactions (
- 2008
- Analysis of chemical reacting heat transfer in SOFCs (
- CFD approach for chemical reaction coupled heat transfer in SOFC channels (
- Chemical reacting transport phenomena and multiscale models for SOFCs (