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Volumn 64, Issue , 2012, Pages 46-64
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3-D pore-scale resolved model for coupled species/charge/fluid transport in a vanadium redox flow battery
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Author keywords
Coupled species and charge transport; Lattice Boltzmann method; Pore scale modeling; Vanadium redox flow battery; X ray computed tomography
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Indexed keywords
BUTLER-VOLMER EQUATION;
CELL PERFORMANCE;
CELL POTENTIAL;
CHARGE COUPLING;
CURRENT DENSITY PROFILES;
ELECTROCHEMICAL MODELS;
ELECTROCHEMICAL PROCESS;
ELECTROLYTE FLOWS;
FIBER DIAMETERS;
FIBER GEOMETRIES;
GALVANOSTATIC DISCHARGE;
LATTICE BOLTZMANN METHOD;
NOVEL METHODOLOGY;
OVERPOTENTIAL;
PORE SCALE;
PORE SPACE;
PORE-SCALE MODELING;
RENEWABLE ENERGY APPLICATIONS;
STORAGE SOLUTIONS;
STORAGE TECHNOLOGY;
SURFACE AREA;
TRANSPORT MECHANISM;
VANADIUM REDOX FLOW;
VANADIUM REDOX FLOW BATTERY;
X-RAY COMPUTED TOMOGRAPHY;
CARBON FIBERS;
ELECTRIC DISCHARGES;
ELECTRODES;
ELECTROLYTES;
ENERGY STORAGE;
FINITE VOLUME METHOD;
GEOMETRY;
SCANNING;
SECONDARY BATTERIES;
THREE DIMENSIONAL COMPUTER GRAPHICS;
VANADIUM;
THREE DIMENSIONAL;
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EID: 84862792011
PISSN: 00134686
EISSN: None
Source Type: Journal
DOI: 10.1016/j.electacta.2011.12.065 Document Type: Article |
Times cited : (159)
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References (30)
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