This paper presents a numerical model to evaluate the dynamic behaviour of heat and mass transfer in metal hydride energy systems. At first, with reference to each metal hydride reactor (i.e. heat exchanger filled with metal hydride), both the equations which describe the hydrogen absorption-desorption and the heat transfer are derived. Then, the "core" of metal hydride energy systems, i.e. coupled metal hydride reactors, has been considered and, by the use of the previous correlations and by further equations taking into account the transient phenomena in the gaseous hydrogen line linking the reactors, the complete numerical modelling has been carried out. This model, founded on a typical thermodynamic approach, is a lumped-parameters mode...
This paper presents a detailed analysis of low-temperature, metal hydride-based hydrogen storage sys...
This paper presents a detailed analysis of low-temperature, metal hydride-based hydrogen storage sys...
This paper presents a detailed analysis of low-temperature, metal hydride-based hydrogen storage sys...
This paper presents a numerical model to evaluate the dynamic behaviour of heat and mass transfer in...
This paper presents a numerical model to evaluate the dynamic behaviour of heat and mass transfer in...
This paper presents a numerical model to evaluate the dynamic behaviour of heat and mass transfer in...
A model for performance evaluation of dual metal hydride energy systems is presented. The complete m...
A model for performance evaluation of dual metal hydride energy systems is presented. The complete m...
A model for performance evaluation of dual metal hydride energy systems is presented. The complete m...
A model for performance evaluation of dual metal hydride energy systems is presented. The complete m...
A model for performance evaluation of dual metal hydride energy systems is presented. The complete m...
As proton exchange membrane fuel cell technology advances, the need for hydrogen storage intensifies...
The numerical approaching method [1] becomes a necessary instrument to understand the hydrogen react...
Metal-hydrides have been of great interest as one of the most promising materials for hydrogen stora...
Metal-hydrides have been of great interest as one of the most promising materials for hydrogen stora...
This paper presents a detailed analysis of low-temperature, metal hydride-based hydrogen storage sys...
This paper presents a detailed analysis of low-temperature, metal hydride-based hydrogen storage sys...
This paper presents a detailed analysis of low-temperature, metal hydride-based hydrogen storage sys...
This paper presents a numerical model to evaluate the dynamic behaviour of heat and mass transfer in...
This paper presents a numerical model to evaluate the dynamic behaviour of heat and mass transfer in...
This paper presents a numerical model to evaluate the dynamic behaviour of heat and mass transfer in...
A model for performance evaluation of dual metal hydride energy systems is presented. The complete m...
A model for performance evaluation of dual metal hydride energy systems is presented. The complete m...
A model for performance evaluation of dual metal hydride energy systems is presented. The complete m...
A model for performance evaluation of dual metal hydride energy systems is presented. The complete m...
A model for performance evaluation of dual metal hydride energy systems is presented. The complete m...
As proton exchange membrane fuel cell technology advances, the need for hydrogen storage intensifies...
The numerical approaching method [1] becomes a necessary instrument to understand the hydrogen react...
Metal-hydrides have been of great interest as one of the most promising materials for hydrogen stora...
Metal-hydrides have been of great interest as one of the most promising materials for hydrogen stora...
This paper presents a detailed analysis of low-temperature, metal hydride-based hydrogen storage sys...
This paper presents a detailed analysis of low-temperature, metal hydride-based hydrogen storage sys...
This paper presents a detailed analysis of low-temperature, metal hydride-based hydrogen storage sys...