The optimal design of hydride tanks is a major technological issue for the rapid development of this technology. In this paper, a two-dimensional model of a closed metal hydrogen reactor is presented. The temperature and the pressure temporal evolutions within the reactor as a function of time are reported. In order to determine the parameters to optimize a fast kinetic and optimal heat exchange, the impact of the supply pressure, the porosity and the dynamic viscosity have been studied. The results show that the effect of these parameters are key-factors for an optimized tank design
Nowadays energy storage seems to be a vital point in any new energy paradigm. It has become an impor...
As proton exchange membrane fuel cell technology advances, the need for hydrogen storage intensifies...
This paper presents a numerical model to evaluate the dynamic behaviour of heat and mass transfer in...
The optimal design of hydride tanks is a major technological issue for the rapid development of this...
The optimal design of hydride tanks is a major technological issue for the rapid development of this...
The optimal design of hydride tanks is a major technological issue for the rapid development of this...
International audienceThe optimal design of hydride tanks is a major technological issue for the rap...
In this paper, a two-dimensional model of a closed metal-hydrogen reactor is presented. The temperat...
In this paper, a two-dimensional model of a closed metal-hydrogen reactor is presented. The temperat...
In this paper, a two-dimensional model of a closed metal-hydrogen reactor is presented. The temperat...
The numerical approaching method [1] becomes a necessary instrument to understand the hydrogen react...
WOS: 000233293500010Hydrogen absorption in two LaNi5-H2 reactors is experimentally and theoretically...
Nowadays energy storage seems to be a vital point in any new energy paradigm. It has become an impor...
Open cooling systems based on metal hydrides (MH) are promising as they are purely driven by the on-...
Open cooling systems based on metal hydrides (MH) are promising as they are purely driven by the on-...
Nowadays energy storage seems to be a vital point in any new energy paradigm. It has become an impor...
As proton exchange membrane fuel cell technology advances, the need for hydrogen storage intensifies...
This paper presents a numerical model to evaluate the dynamic behaviour of heat and mass transfer in...
The optimal design of hydride tanks is a major technological issue for the rapid development of this...
The optimal design of hydride tanks is a major technological issue for the rapid development of this...
The optimal design of hydride tanks is a major technological issue for the rapid development of this...
International audienceThe optimal design of hydride tanks is a major technological issue for the rap...
In this paper, a two-dimensional model of a closed metal-hydrogen reactor is presented. The temperat...
In this paper, a two-dimensional model of a closed metal-hydrogen reactor is presented. The temperat...
In this paper, a two-dimensional model of a closed metal-hydrogen reactor is presented. The temperat...
The numerical approaching method [1] becomes a necessary instrument to understand the hydrogen react...
WOS: 000233293500010Hydrogen absorption in two LaNi5-H2 reactors is experimentally and theoretically...
Nowadays energy storage seems to be a vital point in any new energy paradigm. It has become an impor...
Open cooling systems based on metal hydrides (MH) are promising as they are purely driven by the on-...
Open cooling systems based on metal hydrides (MH) are promising as they are purely driven by the on-...
Nowadays energy storage seems to be a vital point in any new energy paradigm. It has become an impor...
As proton exchange membrane fuel cell technology advances, the need for hydrogen storage intensifies...
This paper presents a numerical model to evaluate the dynamic behaviour of heat and mass transfer in...