Thermal energy storage technology with Phase Change Materials (PCM) is an attractive option to optimise energy resources and to recover and promote excess heat. The phase change behaviour of PCM requires advanced research to understand and better control the thermal energy storage using PCM, which is a crucial step to develop a powerful latent storage system. This paper aims to analyse the multiphysics phenomena of three regenerator configurations, horizontal case and two injection direction of Heat Transfer Fluid (HTF): top and bottom in vertical case. The study is done for the charge and discharge cycles of the solid-solid and solid-liquid phase transitions of PCM. First, the temperature dependence of the thermal and physical properties o...
Capital investment reduction, exergetic efficiency improvement and material compatibility issues hav...
Because human population is growing at such a high rate, as well as the energy consumption per perso...
Phase change materials (PCM) possess a great capacity of accumulation of energy in their temperature...
Thermal energy storage technology with Phase Change Materials (PCM) is an attractive option to optim...
Thermal energy storage technology with Phase Change Materials (PCM) is an attractive option to optim...
Recovering waste heat from industrial activities has been an area of interest for the past few years...
Using the solar energy in day time has no problem. For night time however, the system needs some kin...
Unfortunately the global conventional fuels in reserves are running out while the world energy consu...
The phase change materials (PCM) are materials that can improve thermal energy storage and productio...
The world is facing a major challenge when it comes to proper energy utilization. The increasing ene...
The variability in solar radiation creates a gap between energy demand and supply, which necessitate...
International audienceThe continuous increase in the level of greenhouse gas emissions and the rise ...
A key technological issue facing the success of future Concentrating Solar Thermal Power (CSP) plant...
Latent Heat Thermal Energy Storage (LHTES) is a technology that utilises the phase change energy of ...
Capital investment reduction, exergetic efficiency improvement and material compatibility issues hav...
Capital investment reduction, exergetic efficiency improvement and material compatibility issues hav...
Because human population is growing at such a high rate, as well as the energy consumption per perso...
Phase change materials (PCM) possess a great capacity of accumulation of energy in their temperature...
Thermal energy storage technology with Phase Change Materials (PCM) is an attractive option to optim...
Thermal energy storage technology with Phase Change Materials (PCM) is an attractive option to optim...
Recovering waste heat from industrial activities has been an area of interest for the past few years...
Using the solar energy in day time has no problem. For night time however, the system needs some kin...
Unfortunately the global conventional fuels in reserves are running out while the world energy consu...
The phase change materials (PCM) are materials that can improve thermal energy storage and productio...
The world is facing a major challenge when it comes to proper energy utilization. The increasing ene...
The variability in solar radiation creates a gap between energy demand and supply, which necessitate...
International audienceThe continuous increase in the level of greenhouse gas emissions and the rise ...
A key technological issue facing the success of future Concentrating Solar Thermal Power (CSP) plant...
Latent Heat Thermal Energy Storage (LHTES) is a technology that utilises the phase change energy of ...
Capital investment reduction, exergetic efficiency improvement and material compatibility issues hav...
Capital investment reduction, exergetic efficiency improvement and material compatibility issues hav...
Because human population is growing at such a high rate, as well as the energy consumption per perso...
Phase change materials (PCM) possess a great capacity of accumulation of energy in their temperature...