Homogeneous distribution of the electrolyte over the porous electrode is a critical issue hindering the commercialization of vanadium redox flow batteries, owing to increased overpotential at high current and limited power density of the system. Therefore, an understanding of the physical phenomena regulating mass transport of the electrolyte is crucial to improving system performance. The present work describes the development and experimental validation of a 3D computational fluid dynamic model of a vanadium redox flow battery in a half cell configuration with an active area of 25 cm2. The model simulates the influence of a single serpentine and an interdigitated flow field. The adoption of the half-cell configuration allows the negativ...
Current redox flow battery (RFB) stack models are not particularly conducive to accurate yet high-th...
Vanadium redox flow battery systems safely and efficiently store energy obtained from conventional e...
The vanadium redox flow battery (VRFB) is a promising energy storage technology for stationary appli...
Homogeneous distribution of the electrolyte over the porous electrode is a critical issue hindering ...
Distribution of the electrolyte over the porous electrode is a critical issue limiting the power den...
Numerous researches have been conducted to look for better design of cell architecture of redox flow...
This numerical study investigates compression and flow field design effects on electrode behaviour i...
This study presents 1.) a multi-dimensional model of vanadium Redox Flow Batteries (RFB); 2.) rigoro...
As a key component of flow batteries, the flow field is to distribute electrolytes and to apply/coll...
Vanadium redox flow battery is a promising and interesting storage technology that in a carbon-free ...
Redox flow batteries have seen interest in electronic applications because of their potential to sim...
The purpose of this study is to investigate the effects of the different flow channel shapes on batt...
Miniaturized redox flow batteries have seen interest in electronic applications because of their ...
Several life cycle experiments have been conducted on vanadium redox flow battery cells of size 400,...
Two and three dimensional modeling of a single cell of vanadium redox flow battery has bee...
Current redox flow battery (RFB) stack models are not particularly conducive to accurate yet high-th...
Vanadium redox flow battery systems safely and efficiently store energy obtained from conventional e...
The vanadium redox flow battery (VRFB) is a promising energy storage technology for stationary appli...
Homogeneous distribution of the electrolyte over the porous electrode is a critical issue hindering ...
Distribution of the electrolyte over the porous electrode is a critical issue limiting the power den...
Numerous researches have been conducted to look for better design of cell architecture of redox flow...
This numerical study investigates compression and flow field design effects on electrode behaviour i...
This study presents 1.) a multi-dimensional model of vanadium Redox Flow Batteries (RFB); 2.) rigoro...
As a key component of flow batteries, the flow field is to distribute electrolytes and to apply/coll...
Vanadium redox flow battery is a promising and interesting storage technology that in a carbon-free ...
Redox flow batteries have seen interest in electronic applications because of their potential to sim...
The purpose of this study is to investigate the effects of the different flow channel shapes on batt...
Miniaturized redox flow batteries have seen interest in electronic applications because of their ...
Several life cycle experiments have been conducted on vanadium redox flow battery cells of size 400,...
Two and three dimensional modeling of a single cell of vanadium redox flow battery has bee...
Current redox flow battery (RFB) stack models are not particularly conducive to accurate yet high-th...
Vanadium redox flow battery systems safely and efficiently store energy obtained from conventional e...
The vanadium redox flow battery (VRFB) is a promising energy storage technology for stationary appli...