This study aims to investigate the optimal shell-to-tube radius ratio in a vertical shell-and-tube latent heat thermal energy storage system with phase change material packed in the annulus and heat transfer fluid circulating in the central tube. A conjugate thermodynamic model is developed and validated, and then applied to investigate two series of system configurations: varying the phase change material shell radius at a fixed heat transfer fluid tube radius and varying the heat transfer fluid tube radius at a fixed shell radius. The numerical investigation compares and evaluates energy storage/retrieval density, energy storage/retrieval rate, and total stored/retrieved energy capacity under different shell-to-tube radius ratios. The res...
High-temperature latent heat thermal energy storage systems offer compact storage solutions, benefit...
A vertical multi-tube thermal energy storage system using commercial phase change material (PCM) RT6...
Shell-and-tube latent heat thermal energy storage units employ phase change materials to store and r...
This study aims to investigate the optimal shell-to-tube radius ratio in a vertical shell-and-tube l...
In this study, the effect of the geometrical and operational parameters on vertical cylindrical shel...
Latent heat thermal energy storage is a promising technology to solve the mismatch problem between d...
The shell-and-tube latent heat thermal energy storage (LHTES) system has been widely studied. In thi...
We present a simplified theoretical model able to predict the discharging performance of a shell-and...
A theoretical model to predict the complete melting time of a Latent Heat Thermal Energy Storage (LH...
© 2016 Elsevier Ltd. A simple shell and tube heat exchanger provides a straightforward design for ne...
Thermal energy storage in phase change materials (PCMs) received considerable attention due to the c...
The search for optimal phase change materials (PCMs) for latent heat thermal energy storage systems ...
In the present paper a new multi-objective optimisation procedure for the design of a shell-and-tube...
Due to the mismatching between the renewable energy source and the energy demand, the energy storage...
Latent heat thermal energy storage, based on the absorption or release of heat when a storage materi...
High-temperature latent heat thermal energy storage systems offer compact storage solutions, benefit...
A vertical multi-tube thermal energy storage system using commercial phase change material (PCM) RT6...
Shell-and-tube latent heat thermal energy storage units employ phase change materials to store and r...
This study aims to investigate the optimal shell-to-tube radius ratio in a vertical shell-and-tube l...
In this study, the effect of the geometrical and operational parameters on vertical cylindrical shel...
Latent heat thermal energy storage is a promising technology to solve the mismatch problem between d...
The shell-and-tube latent heat thermal energy storage (LHTES) system has been widely studied. In thi...
We present a simplified theoretical model able to predict the discharging performance of a shell-and...
A theoretical model to predict the complete melting time of a Latent Heat Thermal Energy Storage (LH...
© 2016 Elsevier Ltd. A simple shell and tube heat exchanger provides a straightforward design for ne...
Thermal energy storage in phase change materials (PCMs) received considerable attention due to the c...
The search for optimal phase change materials (PCMs) for latent heat thermal energy storage systems ...
In the present paper a new multi-objective optimisation procedure for the design of a shell-and-tube...
Due to the mismatching between the renewable energy source and the energy demand, the energy storage...
Latent heat thermal energy storage, based on the absorption or release of heat when a storage materi...
High-temperature latent heat thermal energy storage systems offer compact storage solutions, benefit...
A vertical multi-tube thermal energy storage system using commercial phase change material (PCM) RT6...
Shell-and-tube latent heat thermal energy storage units employ phase change materials to store and r...